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M. S., & Parker, R. J. (2008). Assessment of heavy metal enrichment factors and the degree of contamination in marine sediments from Tamaki Estuary, Auckland, New Zealand. Environmental Monitoring and Assessment, 136, 227–238.",{"doi":605},"10.1007\u002Fs10661-007-9678-2",{"id":18,"text":607,"url":18,"identifiers":608},"Adamu, C. L., & Nganje, T. N. (2010). Heavy metal contamination of surface soil in relationship to land use patterns: A case study of Benue State, Nigeria. Materials Sciences and Applications, 1, 127–134.",{"doi":609},"10.4236\u002Fmsa.2010.13021",{"id":18,"text":611,"url":18,"identifiers":612},"Al-Anbari, R., Abdul Hameed, M. J., Obaidy, Al, & Fatima, H. A. A. (2015). Pollution loads and ecological risk assessment of heavy metals in the urban soil affected by various anthropogenic activities. International Journal of Advanced Research, 2, 104–110.",{},{"id":18,"text":614,"url":18,"identifiers":615},"Bąbelewska, A. (2010). The impact of industrial emissions on heavy metal and sulphur contamination level within the area of the projected Jurassic National Park. Prądnik Studies and Reports of the Prof Władysław Szafer Museum, 20, 135–145.",{},{"id":18,"text":617,"url":18,"identifiers":618},"Baran, A., Wieczorek, J., Mazurek, R., Urbański, K., & Klimkowicz-Pawlas, A. (2018). Potential ecological risk assessment and predicting zinc accumulation in soils. Environmental Geochemistry and Health, 40(1), 435–450.",{"doi":619},"10.1007\u002Fs10653-017-9924-7",{"id":18,"text":621,"url":18,"identifiers":622},"Bates, R. L., & Jackson, J. A. (1984). Dictionary of geological terms. New York: Anchor Books. A Division of Random House Inc.",{},{"id":18,"text":624,"url":18,"identifiers":625},"Begum, K., Mohiuddin, K. M., Zakir, H. M., Moshfiqur Rahman, M., & Nazmul Hasan, M. (2014). Heavy metal pollution and major nutrient elements assessment in the soils of Bogra City in Bangladesh. Canadian Chemical Transactions, 3, 316–326.",{},{"id":18,"text":627,"url":18,"identifiers":628},"Błońska, E., Lasota, J., Szuszkiewicz, M., Łukasik, A., & Klamerus-Iwan, A. (2016). Assessment of forest soil contamination in Krakow surroundings in relation to the type of stand. Environmental Earth Sciences. https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs12665-016-6005-7 .",{"doi":629},"10.1007\u002Fs12665-016-6005-7",{"id":18,"text":631,"url":18,"identifiers":632},"Bourennane, H., Douay, F., Sterckeman, T., Villanneau, E., Ciesielski, H. & King, D. (2010). Mapping of anthropogenic trace elements inputs in agricultural topsoil from Northern France using enrichment factors. Geoderma, 157, 165–174.",{"doi":633},"10.1016\u002Fj.geoderma.2010.04.009",{"id":18,"text":635,"url":18,"identifiers":636},"Caeiro, S., Costa, M. H., Ramos, T. B., Fernandes, F., Silveira, N. & Coimbra, A. (2005). Assessing heavy metal contamination in Sado Estuary sediment: An index analysis approach. Ecological Indicators, 5, 151–169.",{"doi":637},"10.1016\u002Fj.ecolind.2005.02.001",{"id":18,"text":639,"url":18,"identifiers":640},"Chen, Z., Chen, J., Tian, S., & Xu, B. (2016). Application of fractal content-gradient method for delineating geochemical anomalies associated with copper occurrences in the Yangla ore field. China Geoscience Frontiers, 8(1), 189–197.",{"doi":641},"10.1016\u002Fj.gsf.2015.11.010",{"id":18,"text":643,"url":18,"identifiers":644},"Chen, H., Teng, Y., Lu, S., Wang, Y., & Wang, J. (2015). Contamination features and health risk of soil heavy metals in China. Science of the Total Environment, 512–513, 143–153.",{"doi":645},"10.1016\u002Fj.scitotenv.2015.01.025",{"id":18,"text":647,"url":18,"identifiers":648},"De Santo, A. V., Fierro, A., Berg, B., Rutigliano, F. A., & De Marco, A. (2002). Heavy metals and litter decomposition in coniferous forests. Developments in Soil Science, 28, 63–78.",{"doi":649},"10.1016\u002FS0166-2481(02)80044-7",{"id":18,"text":651,"url":18,"identifiers":652},"Dung, T. T. T., Cappuyns, V., Swennen, R., & Phung, N. K. (2013). From geochemical background determination to pollution assessment of heavy metals in sediments and soils. Reviews in Environmental Science & Biotechnology, 12, 335–353.",{"doi":653},"10.1007\u002Fs11157-013-9315-1",{"id":18,"text":655,"url":18,"identifiers":656},"Ekwere, A. S., Ekwere, S. J., Ephraim, B. E., & Ugbaja, A. N. (2014). Distribution of heavy metals in urban soils; a case study of Calabar Area, South-Eastern Nigeria. Geosciences, 4, 23–28.",{},{"id":18,"text":658,"url":18,"identifiers":659},"Elias, P., & Gbadegesin, A. (2011). Spatial relationships of urban land use, soils and heavy metal concentrations in Lagos Mainland Area. Journal of Applied Sciences and Environmental Management, 15, 391–399.",{},{"id":18,"text":661,"url":18,"identifiers":662},"Fagbote, E. O., & Olanipekun, E. O. (2010). Evaluation of the status of heavy metal pollution of soil and plant (Chromolaena odorata) of Agbabu Bitumen Deposit Area, Nigeria. American-Eurasian Journal of Scientific Research, 4, 241–248.",{},{"id":18,"text":664,"url":18,"identifiers":665},"Gałuszka, A. (2007). A review of geochemical background concepts and an example using data from Poland. Environmental Geology, 52, 861–870.",{"doi":666},"10.1007\u002Fs00254-006-0528-2",{"id":18,"text":668,"url":18,"identifiers":669},"Gałuszka, A., & Migaszewski, Z. (2011). Geochemical background: An environmental perspective. Mineralogia, 42, 7–17.",{"doi":670},"10.2478\u002Fv10002-011-0002-y",{"id":18,"text":672,"url":18,"identifiers":673},"Gao, X., & Chen, C. T. A. (2012). Heavy metal pollution status in surface sediments of the coastal Bohai Bay. Water Research, 46, 1901–1911.",{"doi":674},"10.1016\u002Fj.watres.2012.01.007",{"id":18,"text":676,"url":18,"identifiers":677},"Garrett, R. G. (1991). The management, analysis and display of exploration geochemical data. Exploration geochemistry workshop. Ottawa Geological Survey of Canada; Open File 2390.",{"doi":678},"10.4095\u002F132397",{"id":18,"text":680,"url":18,"identifiers":681},"Gąsiorek, M., Kowalska, J., Mazurek, R., & Pająk, M. (2017). Comprehensive assessment of heavy metal pollution in topsoil of historical urban park on an example of the Planty Park in Krakow (Poland). Chemosphere, 179, 148–158.",{"doi":682},"10.1016\u002Fj.chemosphere.2017.03.106",{"id":18,"text":684,"url":18,"identifiers":685},"Ghazaryan, K. A., Gevorgyan, G. A., Movsesyan, H. S., Ghazaryan, N. P. & Grigoryan, K. V. (2015). The evaluation of heavy metal pollution degree in the soils around the Zangezur Copper and Molybdenum Combine, Rome, Italy May 17, pp. 161–166.",{},{"id":18,"text":687,"url":18,"identifiers":688},"Golyeva, A., Zazovskaia, E., & Turova, I. (2014). Properties of ancient deeply transformed man-made soils (cultural layers) and their advances to classification by the example of Early Iron Age sites in Moscow Region. CATENA, 137, 605–610.",{"doi":689},"10.1016\u002Fj.catena.2014.12.030",{"id":18,"text":691,"url":18,"identifiers":692},"Gong, Q., Deng, J., Xiang, Y., Wang, Q., & Yang, L. (2008). Calculating pollution indices by heavy metals in ecological geochemistry assessment and a case study in parks of Beijing. Journal of China University of Geosciences, 19, 230–241.",{"doi":693},"10.1016\u002FS1002-0705(08)60042-4",{"id":18,"text":695,"url":18,"identifiers":696},"Grzebisz, W., Cieśla, L., Komisarek, J., & Potarzycki, J. (2002). Geochemical assessment of heavy metals pollution of urban soils. Polish Journal of Environmental Studies, 11, 493–499.",{},{"id":18,"text":698,"url":18,"identifiers":699},"Gu, J. G., Li, Q. S., Fang, J. H., He, B. Y., Fu, H. B., & Tong, Z. J. (2014). Identification of heavy metal sources in there claimed farm land soils of the pearl river estuary in China using a multivariate geostatistical approach. Ecotoxicology and Environmental Safety, 105, 7–12.",{"doi":700},"10.1016\u002Fj.ecoenv.2014.04.003",{"id":18,"text":702,"url":18,"identifiers":703},"Guan, Y., Shao, Ch., & Ju, M. (2014). Heavy metal contamination assessment and partition for industrial and mining gathering areas. International Journal of Environmental Research and Public Health, 11, 7286–7303.",{"doi":704},"10.3390\u002Fijerph110707286",{"id":18,"text":706,"url":18,"identifiers":707},"Gutierrez, C., Fernandez, C., Escuer, M., Campos-Herrera, R., Rodríguez & M. E. B., Carbonell, G. (2016). Effect of soil properties, heavy metals and emerging contaminants in the soil nematodes diversity. Environmental Pollution, 213, 184–194.",{"doi":708},"10.1016\u002Fj.envpol.2016.02.012",{"id":18,"text":710,"url":18,"identifiers":711},"Hajduk, E., Kaniuczak, J., & Właśniewski, S. (2012). The content of heavy metals in farmland soils from the vicinity of the Stalowa Wola power plant. Soil Science Annual, 63, 22–26.",{"doi":712},"10.2478\u002Fv10239-012-0006-3",{"id":18,"text":714,"url":18,"identifiers":715},"Håkanson, L. (1980). An ecological risk index for aquatic. Pollution control: A sedimentological approach. Water Research, 14, 975–1001.",{"doi":716},"10.1016\u002F0043-1354(80)90143-8",{"id":18,"text":718,"url":18,"identifiers":719},"Halecki, W., & Gąsiorek, M. (2015). Seasonal variability of microbial biomass phosphorus in urban soils. Science of the Total Environment, 502, 42–47.",{"doi":720},"10.1016\u002Fj.scitotenv.2014.09.009",{"id":18,"text":722,"url":18,"identifiers":723},"Han, D., Cheng, J., Hu, X., Jiang, Z., Mo, L. & Xu, H. (2016). Spatial distribution, risk assessment and source identification of heavy metals in sediments of the Yangtze River Estuary, China. Marine Pollution Bulletin, 115(1–2), 141–148.",{},{"id":18,"text":725,"url":18,"identifiers":726},"Hawkes, H. E., & Webb, J. S. (1962). Geochemistry in mineral exploration (pp. 1–415). New York: Harper & Row.",{},{"id":18,"text":728,"url":18,"identifiers":729},"He, Z. (2015). Heavy metal contamination of soils: Sources, indicators, and assessment. Journal of Environmental Indicators, 9, 17–18.",{},{"id":18,"text":731,"url":18,"identifiers":732},"Hong-gui, D., Teng-feng, G., Ming-hu, L., & Xu, D. (2012). Comprehensive assessment model on heavy metal pollution in soil. International Journal of Electrochemical Science, 7, 5286–5296.",{"doi":733},"10.1016\u002FS1452-3981(23)19621-0",{"id":18,"text":735,"url":18,"identifiers":736},"Hovmand, M. F., Kemp, K., Kystol, J., Johnsen, I., Riis-Nielsen, T., & Pacyna, J. M. (2008). Atmospheric heavy metal deposition accumulated in rural forest soils of southern Scandinavia. Environmental Pollution, 155, 537–541.",{"doi":737},"10.1016\u002Fj.envpol.2008.01.047",{"id":18,"text":739,"url":18,"identifiers":740},"Hu, Y., Liu, X., Bai, J., Shih, K., Zeng, E. Y., & Cheng, H. (2013). Assessing heavy metal pollution in the surface soils of a region that had undergone three decades of intense industrialization and urbanization. Environmental Science and Pollution Research, 20, 6150–6159.",{"doi":741},"10.1007\u002Fs11356-013-1668-z",{"id":18,"text":743,"url":18,"identifiers":744},"Inboonchuay, T., Suddhiprakarn, A., Kheoruenromne, I., Anusontpornperm, S., & Gilkes, R. J. (2016). Amounts and associations of heavy metals in paddy soils of the Khorat Basin. Thailand, Geoderma Regional, 7, 120–131.",{"doi":745},"10.1016\u002Fj.geodrs.2016.02.002",{"id":18,"text":747,"url":18,"identifiers":748},"Inengite, A. K., Abasi, C. Y., & Walter, C. (2015). Application of pollution indices for the assessment of heavy metal pollution in flood impacted soil. International Research Journal of Pure & Applied Chemistry, 8, 175–189.",{"doi":749},"10.9734\u002FIRJPAC\u002F2015\u002F17859",{"id":18,"text":751,"url":18,"identifiers":752},"Jiang, X., Lu, W. X., Zhao, H. Q., Yang, Q. C., & Yang, Z. P. (2014). Potential ecological risk assessment and prediction of soil heavy-metal pollution around coal gangue dump. Natural Hazards and Earth Systems Sciences, 14, 1599–1610.",{"doi":753},"10.5194\u002Fnhess-14-1599-2014",{"id":18,"text":755,"url":18,"identifiers":756},"Kabata-Pendias, A. (2011). Trace elements of soils and plants (4th ed., pp. 28–534). Boca Raton: CRC press, Taylor & Francis Group.",{},{"id":18,"text":758,"url":18,"identifiers":759},"Karczewska, A., & Kabała, C. (2002). Trace elements in soils in the Stołowe Mountains National Park. Szczeliniec, 6, 133–160.",{},{"id":18,"text":761,"url":18,"identifiers":762},"Karim, Z., Qureshi, B. A., & Mumtaz, M. (2015). Geochemical baseline determination and pollution assessment of heavy metals in urban soils of Karachi, Pakistan. Ecological Indicators, 48, 358–364.",{"doi":763},"10.1016\u002Fj.ecolind.2014.08.032",{"id":18,"text":765,"url":18,"identifiers":766},"Kaste, J. M., Bostick, B. C., Heimsath, A. M., Steinnes, E., & Friedland, A. J. (2011). Using atmospheric fallout to date O horizon layers and quantify metal dynamics during decomposition. Geochimica et Cosmochimica Acta, 75, 1642–1661.",{"doi":767},"10.1016\u002Fj.gca.2011.01.011",{"id":18,"text":769,"url":18,"identifiers":770},"Kawahigashi, M., Prokushkin, A., & Sumida, H. (2011). Effect of fire on solute release from O horizons under larch forest in Central Siberian permafrost terrain. Geoderma, 166, 171–180.",{"doi":771},"10.1016\u002Fj.geoderma.2011.07.027",{"id":18,"text":773,"url":18,"identifiers":774},"Kelepertzis, E. (2014). Accumulation of heavy metals in agricultural soils of Mediterranean: Insights from Argolida basin, Peloponnese, Greece. Geoderma, 221–222, 82–90.",{"doi":775},"10.1016\u002Fj.geoderma.2014.01.007",{"id":18,"text":777,"url":18,"identifiers":778},"Kierczak, J., Pedziwiatr, A., Waroszewski, J., & Modelska, M. (2016). Mobility of Ni, Cr and Co in serpentine soils derived on various ultrabasic bedrocks under temperate climate. Geoderma, 268, 78–91.",{"doi":779},"10.1016\u002Fj.geoderma.2016.01.025",{"id":18,"text":781,"url":18,"identifiers":782},"Kloke, A. (1979). Content of arsenic, cadmium, chromium, fluorine, lead, mercury, and nickel in plants grown on contaminated soils, United Nations-ECE symposium, Geneva, pp. 51–53.",{},{"id":18,"text":784,"url":18,"identifiers":785},"Kouamé, I. K., Kouassi, L. K., Dibi, B., Adou, K. M., Rascanu, I. D. & Romanescu, G. (2013). Potential groundwater pollution risks by heavy metals from agricultural soil in Songon Area (Abidjan, Côte d’Ivoire). Journal of Environmental Protection, 4, 1441–1448.",{"doi":786},"10.4236\u002Fjep.2013.412165",{"id":18,"text":788,"url":18,"identifiers":789},"Kowalska, J., Mazurek, R., Gąsiorek, M., Setlak, M., Zaleski, T., & Waroszewski, J. (2016). Soil pollution indices conditioned by medieval metallurgical activity: A case study from Krakow (Poland). Environmental Pollution, 218, 1023–1036.",{"doi":790},"10.1016\u002Fj.envpol.2016.08.053",{"id":18,"text":792,"url":18,"identifiers":793},"Li, M. S., & Yang, S. X. (2008). Heavy metal contamination in soils and phytoaccumulation in a manganese mine Wasteland, South China. Air, Soil and Water Research, 1, 31–41.",{},{"id":18,"text":795,"url":18,"identifiers":796},"Li, M., Yang, W., Sun, T., & Jin, Y. (2016). Potential ecological risk of heavy metal contamination in sediments and macrobenthos in coastal wetlands induced by freshwater releases: A case study in the Yellow River Delta, China. Marine Pollution Bulletin, 103, 227–239.",{"doi":797},"10.1016\u002Fj.marpolbul.2015.12.014",{"id":18,"text":799,"url":18,"identifiers":800},"Lis, J., & Pasieczna, A. (1997). Geochemical anomalies of Pb-Zn-Cd in soils of Upper Silesia. Przeglad Geologiczny, 45(2), 182–189.",{},{"id":18,"text":802,"url":18,"identifiers":803},"Liu, R., Wang, M., Chen, W., & Peng, C. (2016). Spatial pattern of heavy metals accumulation risk in urban soils of Beijing and its influencing factors. Environmental Pollution, 210, 174–181.",{"doi":804},"10.1016\u002Fj.envpol.2015.11.044",{"id":18,"text":806,"url":18,"identifiers":807},"Long, E. R., MacDonald, D. D., Smith, L., & Calder, F. D. (1995). Incidence of adverse biological effects within ranges of chemical concentrations in marine and estuarine sediments. Environmental Management, 19, 81–97.",{"doi":808},"10.1007\u002FBF02472006",{"id":18,"text":810,"url":18,"identifiers":811},"Loska, K., Wiechulab, D., & Korus, I. (2004). Metal contamination of farming soils affected by industry. Environment International, 30, 159–165.",{"doi":812},"10.1016\u002FS0160-4120(03)00157-0",{"id":18,"text":814,"url":18,"identifiers":815},"Mahmoudabadi, E., Sarmadian, F., & Nazary Moghaddam, R. (2015). Spatial distribution of soil heavy metals in different land uses of an industrial area of Tehran (Iran). International Journal of Environmental Science and Technology, 12, 3283–3298.",{"doi":816},"10.1007\u002Fs13762-015-0808-z",{"id":18,"text":818,"url":18,"identifiers":819},"Markiewicz-Patkowska, J., Hursthouse, A., & Przybyla-Kij, H. (2005). The interaction of heavy metals with urban soils: sorption behaviour of Cd, Cu, Cr, Pb and Zn with a typical mixed brownfield deposit. Environment International, 31, 513–521.",{"doi":820},"10.1016\u002Fj.envint.2004.09.004",{"id":18,"text":822,"url":18,"identifiers":823},"Matschullat, J., Ottenstein, R., & Reimann, C. (2000). Geochemical background—Can we calculate it? Environmental Geology, 39, 990–1000.",{"doi":824},"10.1007\u002Fs002549900084",{"id":18,"text":826,"url":18,"identifiers":827},"Mazurek, R., & Wieczorek, J. (2007). Mercury concentration in organic and humus horizons of soils in the Babiogórski National Park. Ecological Chemistry and Engineering, 14(5–6), 497–503.",{},{"id":18,"text":829,"url":18,"identifiers":830},"Mazurek R., Kowalska J., Gąsiorek M. & Setlak M. (2016). Micromorphological and physico-chemical analyses of cultural layers in the urban soil of a medieval city—A case study from Krakow, Poland. Catena, 141, 73–84.",{"doi":831},"10.1016\u002Fj.catena.2016.02.026",{"id":18,"text":833,"url":18,"identifiers":834},"Mazurek, R., Kowalska, J., Gąsiorek, M., Zadrożny, P., Józefowska, A. & Zaleski, T. (2017). Assessment of heavy metals contamination in surface layers of Roztocze National Park forest soils (SE Poland) by indices of pollution. Chemosphere, 168, 839–850.",{"doi":835},"10.1016\u002Fj.chemosphere.2016.10.126",{"id":18,"text":837,"url":18,"identifiers":838},"McLennan, S. M. (2001). Relationships between the trace element composition of sedimentary rocks and upper continental crust. Geochemistry, Geophysics, Geosystems 2 (Article No. 2000GC000109).",{"doi":839},"10.1029\u002F2000GC000109",{"id":18,"text":841,"url":18,"identifiers":842},"Medyńska-Juraszek, A., & Kabała, C. (2012). Heavy metal pollution of forest soils affected by the copper industry. Journal of Elementology, 17(3), 441–451.",{},{"id":18,"text":844,"url":18,"identifiers":845},"Mmolawa, K. B., Likuku, A. S., & Gaboutloeloe, G. K. (2011). Assessment of heavy metal pollution in soils along major roadside areas in Botswana. African Journal of Environmental Science and Technology, 3, 186–196.",{},{"id":18,"text":847,"url":18,"identifiers":848},"Mohamed, T. A., Mohamed, M. A. K., Rabeiy, R., & Ghandour, M. A. (2014). Application of pollution indices for evaluation of heavy metals in Soil close to phosphate fertilizer plant, Assiut, Egypt. Assiut University Bulletin for Environmental Researches, 17(1), 45–55.",{},{"id":18,"text":850,"url":18,"identifiers":851},"Müller, G. (1969). Index of geoaccumulation in sediments of the Rhine River. GeoJournal, 2, 108–118.",{},{"id":18,"text":853,"url":18,"identifiers":854},"Murtagh, F., & Legendre, P. (2014). Ward’s hierarchical agglomerative clustering method: Which algorithms implement Ward’s criterion? Journal of Classification, 31, 274–295.",{"doi":855},"10.1007\u002Fs00357-014-9161-z",{"id":18,"text":857,"url":18,"identifiers":858},"Nannoni, F., & Protano, G. (2016). Chemical and biological methods to evaluate the availability of heavy metals in soils of the Siena urban area (Italy). Science of the Total Environment, 568, 1–10.",{"doi":859},"10.1016\u002Fj.scitotenv.2016.05.208",{"id":18,"text":861,"url":18,"identifiers":862},"Nikolaidis, C., Zafiriadis, I., Mathioudakis, V., & Constantinidis, T. (2010). Heavy metal pollution associated with an abandoned lead—Zinc mine in the Kirki Region, NE Greece. Bulletin of Environmental Contamination and Toxicology, 85, 307–312.",{"doi":863},"10.1007\u002Fs00128-010-0079-9",{"id":18,"text":865,"url":18,"identifiers":866},"Nowrouzi, M., & Pourkhabbaz, A. (2014). Application of geoaccumulation index and enrichment factor for assessing metal contamination in the sediments of Hara Biosphere Reserve, Iran. Chemical Speciation & Bioavailability, 26, 99.",{"doi":867},"10.3184\u002F095422914X13951584546986",{"id":18,"text":869,"url":18,"identifiers":870},"Obiora, S. C., Chukwu, A., & Davies, T. C. (2016). Heavy metals and health risk assessment of farmland soils and food crops around Pb-Zn mining localities in Enyigba, southeastern Nigeria. Journal of African Earth Sciences, 116, 182–189.",{"doi":871},"10.1016\u002Fj.jafrearsci.2015.12.025",{"id":18,"text":873,"url":18,"identifiers":874},"Ogunkunle, C. O., & Fatoba, P. O. (2013). Pollution loads and the ecological risk assessment of soil heavy metals around a mega cement factory in Southwest Nigeria. Polish Journal of Environmental Studies, 22, 487–493.",{},{"id":18,"text":876,"url":18,"identifiers":877},"Ololade, I. A. (2014). An assessment of heavy-metal contamination in soils within auto-mechanic workshops using enrichment and contamination factors with geoaccumulation indexes. Journal of Environmental Protection, 5, 970–982.",{"doi":878},"10.4236\u002Fjep.2014.511098",{"id":18,"text":880,"url":18,"identifiers":881},"Omatoso, O. A., & Ojo, O. J. (2015). Assessment of some heavy metals contamination in the soil of river Niger floodplain at Jebba, central Nigeria. Water Utility Journal, 9, 71–80.",{},{"id":18,"text":883,"url":18,"identifiers":884},"Oti Wilberforce, J. O. (2015). Pollution indices and bioaccumulation factors of heavy metals in selected fruits and vegetables from a derelict mine and their associated health implications. International Journal of Environmental Science and Toxicology Research, 3, 9–15.",{},{"id":18,"text":886,"url":18,"identifiers":887},"Pająk, M., Gąsiorek, M., Cygan, A., & Wanic, T. (2015). Concentrations of Cd, Pb and Zn in the top layer of soil and needles of scots pine (Pinus Sylvestris L.); A case study of two extremely different conditions of the forest environment in Poland. Fresenius Environmental Bulletin, 24, 71–76.",{},{"id":18,"text":889,"url":18,"identifiers":890},"Pająk, M., Halecki, W., & Gąsiorek, M. (2017). Accumulative response of Scots pine (Pinus sylvestris L.) and silver birch (Betula pendula Roth) to heavy metals enhanced by Pb-Zn ore mining and processing plants: Explicitly spatial considerations of ordinary kriging based on a GIS approach. Chemosphere, 168, 851–859.",{"doi":891},"10.1016\u002Fj.chemosphere.2016.10.125",{"id":18,"text":893,"url":18,"identifiers":894},"Pan, L., Ma, L., Wang, X., & Hou, H. (2016). Heavy metals in soils from a typical county in Shanxi Province, China: Levels, sources and spatial distribution. Chemosphere, 148, 248–254.",{"doi":895},"10.1016\u002Fj.chemosphere.2015.12.049",{"id":18,"text":897,"url":18,"identifiers":898},"Pejman, A., Gholamrez Nabi, B., Saeedi, M., & Baghvanda, A. (2015). A new index for assessing heavy metals contamination in sediments: A case study. Ecological Indicators, 58, 365–373.",{"doi":899},"10.1016\u002Fj.ecolind.2015.06.012",{"id":18,"text":901,"url":18,"identifiers":902},"Qingjie, G., Jun, D., Yunchuan, X., Qingfei, W., & Liqiang, Y. (2008). Calculating pollution indices by heavy metals in ecological geochemistry assessment and a case study in Parks of Beijing. Journal of China University of Geosciences, 19(3), 230–241.",{"doi":693},{"id":18,"text":904,"url":18,"identifiers":905},"Rao, R. C. (1964). The use and interpretation of principal component analysis in applied research. The Indian Journal of Statistics, Series A, 26(4), 329–358.",{},{"id":18,"text":907,"url":18,"identifiers":908},"Redon, P. O., Bur, T., Guiresse, M., Probst, J. L., Toiser, A. & Revel, J. C.  (2013). Modelling trace metal background to evaluate anthropogenic contamination in farmland soils of south-western France. Geoderma, 206, 112–122.",{"doi":909},"10.1016\u002Fj.geoderma.2013.04.023",{"id":18,"text":911,"url":18,"identifiers":912},"Reimann, C., & De Caritat, P. (2005). Distinguishing between natural and anthropogenic sources for elements in the environment: Regional geochemical surveys versus enrichment factors. Science of the Total Environment, 337, 91–107.",{"doi":913},"10.1016\u002Fj.scitotenv.2004.06.011",{"id":18,"text":915,"url":18,"identifiers":916},"Reimann, C., & Garret, R. G. (2005). Geochemical background: Concept and reality. Science of the Total Environment, 350, 12–27.",{"doi":917},"10.1016\u002Fj.scitotenv.2005.01.047",{"id":18,"text":919,"url":18,"identifiers":920},"Ripin, S. N. M., Hasan, S., Kamal, M. L., & Hashim, N. M. (2014). Analysis and pollution assessment of heavy metal in soil, Perlis. The Malaysian Journal of Analytical Sciences, 18, 155–161.",{},{"id":18,"text":922,"url":18,"identifiers":923},"Rodríguez, M. J. A., Ramos-Miras, J. J., Boluda, R., & Gil, C. (2013). Spatial relations of heavy metals in farmland and greenhouse soils of a Mediterranean environment region (Spain). Geoderma, 200–201, 180–188.",{"doi":924},"10.1016\u002Fj.geoderma.2013.02.014",{"id":18,"text":926,"url":18,"identifiers":927},"Rudnick, R. L., & Gao, S. (2003). Composition of the continental crust, treatise on geochemistry. Treatise on Geochemistry, 3, 1–64.",{},{"id":18,"text":929,"url":18,"identifiers":930},"Sadhu, K., Adhikari, K., & Gangopadhyay, A. (2012). Assessment of heavy metal contamination of soils in and around open cast mines of Raniganj area, India. International Journal of Environmental Engineering Research, 2, 77–85.",{},{"id":18,"text":932,"url":18,"identifiers":933},"Salah, E. A., Turki, A. M., & Mahal, S. N. (2015). Chemometric evaluation of the heavy metals in urban soil of Fallujah City, Iraq. Journal of Environmental Protection, 6, 1279–1292.",{"doi":934},"10.4236\u002Fjep.2015.611112",{"id":18,"text":936,"url":18,"identifiers":937},"Sayadi, M. H., Shabani, M., & Ahmadpour, N. (2015). Pollution index and ecological risk of heavy metals in the surface soils of Amir-Abad Area in Birjand City, Iran. Health Scope, 4, 121–137.",{"doi":938},"10.17795\u002Fjhealthscope-21137",{"id":18,"text":940,"url":18,"identifiers":941},"Schroth, A. W., Bostick, B. C., Kaste, J. M., & Friedland, A. J. (2008). Lead sequestration and species redistribution during soil matter decomposition. Environmental Science and Technology, 42(10), 3627–3633.",{"doi":942},"10.1021\u002Fes703002b",{"id":18,"text":944,"url":18,"identifiers":945},"Shu, Y., & Zhai, S. (2014). Study on soil heavy metals contamination of a lead refinery. Chinese Journal of Geochemistry, 33, 393–397.",{"doi":946},"10.1007\u002Fs11631-014-0703-1",{"id":18,"text":948,"url":18,"identifiers":949},"Smith, L. I. (2002). A tutorial on principal components analysis introduction. Statistics (Ber)., 51, 52.",{},{"id":18,"text":951,"url":18,"identifiers":952},"Sołek-Podwika, K., Ciarkowska, K., & Kaleta, D. (2016). Assessment of the risk of pollution by sulfur compounds and heavy metals in soils located in the proximity of a disused for 20 years sulfur mine (SE Poland). Journal of Environmental Management, 180, 450–458.",{"doi":953},"10.1016\u002Fj.jenvman.2016.05.074",{"id":18,"text":955,"url":18,"identifiers":956},"Stajic, J. M., Milenkovic, B., Pucarevic, M., Stojic, N., Vasiljevic, I., & Nikezic, D. (2016). Exposure of school children to polycyclic aromatic hydrocarbons, heavy metals and radionuclides in the urban soil of Kragujevac city, Central Serbia. Chemosphere, 146, 68–74.",{"doi":957},"10.1016\u002Fj.chemosphere.2015.12.006",{"id":18,"text":959,"url":18,"identifiers":960},"Su, C., Jiang, L., & Zhang, W. (2014). A review on heavy metal contamination in the soil worldwide: Situation, impact and remediation techniques. Environmental Skeptics and Critics, 2, 24–38.",{},{"id":18,"text":962,"url":18,"identifiers":963},"Sutherland, R. A. (2000). Bed sediment-associated trace metals in an urban stream, Oahu, Hawaii. Environmental Geology, 39, 611–627.",{"doi":964},"10.1007\u002Fs002540050473",{"id":18,"text":966,"url":18,"identifiers":967},"Tang, Q., Li, Y., & Xu, Y. (2015). Land suitability assessment for post-earthquake reconstruction: A case study of Lushan in Sichuan, China. Journal of Geographical Sciences, 25, 865–878.",{"doi":968},"10.1007\u002Fs11442-015-1207-6",{"id":18,"text":970,"url":18,"identifiers":971},"Tomaškin, J., Tomaškinová, J., Kmeťová, J., & Drimal, M. (2013). The concentration of heavy metals in grassland ecosystems of the central Slovakia national parks. Carpathian Journal of Earth and Environmental Sciences, 8, 35–40.",{},{"id":18,"text":973,"url":18,"identifiers":974},"Valladares, G. S., Camargo, O. A., Carvalho, J. R. P., & Silva, A. M. C. (2009). Assessment of heavy metals in soils of a vineyard region with the use of principal component analysis. Science in Agriculture, 66, 361–367.",{},{"id":18,"text":976,"url":18,"identifiers":977},"Varol, M. (2011). Assessment of heavy metal contamination in sediments of the Tigris River (Turkey) using pollution indices and multivariate statistical techniques. Journal of Hazardous Materials, 195, 355–364.",{"doi":978},"10.1016\u002Fj.jhazmat.2011.08.051",{"id":18,"text":980,"url":18,"identifiers":981},"Wang, Z., Wang, Y., Chen, L., Yan, C., Yan, Y., & Chi, Q. (2015). Assessment of metal contamination in coastal sediments of the Maluan Bay (China) using geochemical indices and multivariate statistical approaches. Marine Pollution Bulletin, 99, 43–53.",{"doi":982},"10.1016\u002Fj.marpolbul.2015.07.064",{"id":18,"text":984,"url":18,"identifiers":985},"Waroszewski, J., Sprafke, T., Kabala, C., Musztyfaga, E., Łabaz, B., & Woźniczka, P. (2017). Aeolian silt contribution to soils on mountain slopes (Mt. Ślęża, southwest Poland). Quaternary Research. https:\u002F\u002Fdoi.org\u002F10.1017\u002Fqua.2017.76 .",{"doi":986},"10.1017\u002Fqua.2017.76",{"id":18,"text":988,"url":18,"identifiers":989},"Wei, B., & Yang, L. (2010). A review of heavy metal contaminations in urban soils, urban road dusts and agricultural soils from China. Microchemical Journal, 94, 99–107.",{"doi":990},"10.1016\u002Fj.microc.2009.09.014",{"id":18,"text":992,"url":18,"identifiers":993},"Wold, S., Esbensen, K., & Geladi, P. (1987). Principal component analysis. Chemometrics and Intelligent Laboratory Systems, 2(1–3), 37–52.",{"doi":994},"10.1016\u002F0169-7439(87)80084-9",{"id":18,"text":996,"url":18,"identifiers":997},"Wu, S., Peng, S., Zhang, X., Wu, D., Luo, W. & Zhang, T. (2015). Levels and health risk assessments of heavy metals in urban soils in Dongguan, China. Journal of Geochemical Exploration, 148, 71–78.",{"doi":998},"10.1016\u002Fj.gexplo.2014.08.009",{"id":18,"text":1000,"url":18,"identifiers":1001},"Xia, P., Meng, X. W., Yin, P., Cao, Z. M., & Wang, X. Q. (2011). Eighty-year sedimentary record of heavy metal inputs in the intertidal sediments from the Nanliu River estuary, Beibu Gulf of South China Sea. Environmental Pollution, 159, 92–99.",{"doi":1002},"10.1016\u002Fj.envpol.2010.09.014",{"id":18,"text":1004,"url":18,"identifiers":1005},"Xu, G., Liu, J., Pei, S., Hu, G., & Kong, X. (2015). Geochemical background and ecological risk of heavy metals in surface sediments from the west Zhoushan Fishing Ground of East China Sea. Environmental Science and Pollution Research, 22, 20283–20294.",{"doi":1006},"10.1007\u002Fs11356-015-5662-5",{"id":18,"text":1008,"url":18,"identifiers":1009},"Zawadzki, J., Fabijańczyk, P., & Magiera, T. (2007). The influence of forest stand and organic horizon development on soil surface measurement of magnetic susceptibility. Polish Journal of Soil Science, 40(2), 113–124.",{},{"id":18,"text":1011,"url":18,"identifiers":1012},"Zhang, J., & Liu, C. L. (2002). Riverine composition and estuarine geochemistry of particulate metals in China: Weathering features, anthropogenic impact and chemical fluxes. Estuarine Coastal Shelf Science, 54, 1051–1070.",{"doi":1013},"10.1006\u002Fecss.2001.0879",{"id":18,"text":1015,"url":18,"identifiers":1016},"Zhang, W., Liu, X., Cheng, H., Zeng, E. Y., & Hu, Y. (2012). Heavy metal pollution in sediments of a typical mariculture zone in South China. Marine Pollution Bulletin, 64, 712–720.",{"doi":1017},"10.1016\u002Fj.marpolbul.2012.01.042",{"id":18,"text":1019,"url":18,"identifiers":1020},"Zhiyuan, W., Dengfeng, W., Huiping, Z., & Zhiping, Q. (2011). Assessment of soil heavy metal pollution with principal component analysis and geoaccumulation index. Procedia Environmental Sciences, 10, 1946–1952.",{"doi":1021},"10.1016\u002Fj.proenv.2011.09.305",{"id":18,"text":1023,"url":18,"identifiers":1024},"Zhong, L., Liming, L. & Jiewen, Y. (2010). Assessment of heavy metals contamination of paddy soil in Xiangyin county, China. In Symposium 4.1.2 management and protection of receiving environments, 19th world congress of soil science, soil solutions for a Changing World 191—6 August 2010, Brisbane, Australia, pp. 17–20.",{},{"id":18,"text":1026,"url":18,"identifiers":1027},"Zhou, S., Zhou, K., Cui, Y., Wang, J., & Ding, J. (2015). Identifying geochemical anomalies according to the content and coefficient variance of trance elements. Scientia Geologica Sinica, 50, 1014–1022.",{},{"id":1029,"createTime":1030,"updateTime":1030,"relativeEntities":1031,"slug":1032,"properties":1033,"entityType":72,"verifyStatus":73,"verifyTime":1030,"verifyNote":74,"syncStatus":17,"languages":1049,"translateLanguages":18,"viewCount":19,"primaryUrl":1050,"fullTextUrl":18,"authors":1051,"publicationType":175,"publisherRelationship":1176,"citationCount":1203,"citationInfo":1204,"publishDate":1208,"publishYear":1209,"citationAnalyzeStatus":17,"lastCitationAnalyze":18,"indexDatabases":18,"openAccess":18,"references":1210,"isForceReanalyzing":210},"2b75e4e8-aa76-4b1c-8655-6b233c114c6a","2024-10-04T15:43:28.774+00:00",[],"Foliar-dust-and-heavy-metal-deposit-on-leaves-of-urban-trees-in-Budapest-Hungary-",{"mag":1034,"keywords":1036,"pmc":1037,"openalex":1039,"abstract":1041,"title":1043,"pm":1045,"doi":1047},{"VOID":1035},"3103893544",{},{"VOID":1038},"8081696",{"VOID":1040},"W3103893544",{"EN":1042},"\u003Cjats:title>Abstract\u003C\u002Fjats:title>\u003Cjats:p>This work considers dust deposition and the heavy metal (HM) content on leaves of urban trees (\u003Cjats:italic>Acer platanoides\u003C\u002Fjats:italic> L. ‘Globosum,’ \u003Cjats:italic>Fraxinus excelsior\u003C\u002Fjats:italic> L. ‘Westhof’s Glorie’ and \u003Cjats:italic>Tilia tomentosa\u003C\u002Fjats:italic> Moench.) in order to estimate the trees’ capacity to remove dust and HM from the air. Leaves were collected from the Buda Arboretum and from different streets of heavy traffic in Budapest, Hungary, during 2015 and 2016. At each site, five trees were sampled by collecting 6 leaves from each tree from the height of 2–3 m. Dust deposits on the leaves were removed by soaking the fresh foliage in distilled water for 20 h and then washed with ultrasound shaking. Afterward, the leaves were dried to constant weight and then they were digested in nitric acid–hydrogen peroxide treatment, and their Pb, Fe, Ni, Zn and Cu contents were measured using an inductively coupled plasma (ICP AS) spectrometer. The removed dust deposit was dried, and after a similar digestion treatment the Pb, Fe, Ni, Zn and Cu contents were measured using an AURORA AI 1200 AAS appliance. The HM deposit was calculated in mg m\u003Cjats:sup>–2\u003C\u002Fjats:sup> leaf surface area. In 2015, the amount of foliar dust deposit from spring to autumn increased from 86.3 to 270.2 mg m\u003Cjats:sup>–2\u003C\u002Fjats:sup>. The most efficient tree species in trapping dust on their leaves was the silver linden (98.5–123.5 mg m\u003Cjats:sup>−2\u003C\u002Fjats:sup>), followed by the Norway maple (74.2–84.8 mg m\u003Cjats:sup>−2\u003C\u002Fjats:sup>) and the common ash (62.8–74.6 mg m\u003Cjats:sup>−2\u003C\u002Fjats:sup>). The deposit of HM elements showed seasonal differences: the quantity of Fe and Pb deposit on autumnal leaves increased five- to tenfold, while other heavy metals did not show accumulation. Silver linden with its pubescent (hairy) leaf surface proved to be most efficient in entrapping and retaining dust and heavy metals. The 60–100% higher Pb and Fe content of autumnal leaves indicate that over the season leaves may absorb Fe and Pb from the foliar dust. Our results confirmed that the foliar dust is a potential indicator for monitoring the HM content in the air. We also show that foliar dust deposits should be considered when estimating the capacity of urban trees to clean the air.\u003C\u002Fjats:p>",{"EN":1044},"Foliar dust and heavy metal deposit on leaves of urban trees in Budapest (Hungary)",{"VOID":1046},"33185759",{"VOID":1048},"10.1007\u002Fs10653-020-00769-y",[76],"https:\u002F\u002Flink.springer.com\u002F10.1007\u002Fs10653-020-00769-y",[1052,1073,1092,1107,1127,1142,1159],{"id":1053,"sortIndex":138,"researcher":18,"roles":1054,"affiliations":1055,"properties":1066},"46b78226-c61e-4d06-8e79-ebee202a71e5",[],[1056],{"id":1057,"sortIndex":19,"affiliation":1058,"properties":18},"a38c0cb3-58c8-4760-852b-ddff933158af",{"id":1059,"createTime":1060,"updateTime":1060,"relativeEntities":1061,"slug":1062,"properties":1063,"entityType":94,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"3351bbc6-717e-44a8-b46f-ca976446ae1d","2024-10-04T15:43:28.825+00:00",[],"Department-of-Meteorology-E%C3%B6tv%C3%B6s-Lor%C3%A1nd-University-P%C3%A1zm%C3%A1ny-P%C3%A9ter-stny-1-A-Budapest-1117-Hungary",{"title":1064},{"EN":1065},"Department of Meteorology, Eötvös Loránd University, Pázmány Péter stny. 1\u002FA, Budapest, 1117, Hungary",{"openalex":1067,"orcid":1069,"title":1071},{"VOID":1068},"A5025130268",{"VOID":1070},"https:\u002F\u002Forcid.org\u002F0000-0002-0550-9266",{"EN":1072},"Róbert Mészáros",{"id":1074,"sortIndex":120,"researcher":18,"roles":1075,"affiliations":1076,"properties":1087},"57415a86-4a19-45f9-a993-200394aec820",[],[1077],{"id":1078,"sortIndex":19,"affiliation":1079,"properties":18},"2a61918a-2916-4bd5-b983-c12274490ac1",{"id":1080,"createTime":1081,"updateTime":1081,"relativeEntities":1082,"slug":1083,"properties":1084,"entityType":94,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"ee4228b6-25cb-4cd1-a1d9-5667d0fd1a47","2024-10-04T15:43:28.790+00:00",[],"Department-of-Floriculture-and-Dendrology-Szent-Istv%C3%A1n-University-Vill%C3%A1nyi-Str-35-43-Budapest-1118-Hungary",{"title":1085},{"EN":1086},"Department of Floriculture and Dendrology, Szent István University, Villányi Str. 35-43., Budapest, 1118, Hungary",{"openalex":1088,"title":1090},{"VOID":1089},"A5061454527",{"EN":1091},"Diószegi Magdolna Sütöriné",{"id":1093,"sortIndex":104,"researcher":18,"roles":1094,"affiliations":1095,"properties":1102},"9c6fc043-6806-48d9-ae11-1e7648567471",[],[1096],{"id":1097,"sortIndex":19,"affiliation":1098,"properties":18},"fd8cbe47-de24-4669-8b57-25eb77aafa17",{"id":1080,"createTime":1081,"updateTime":1081,"relativeEntities":1099,"slug":1083,"properties":1100,"entityType":94,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},[],{"title":1101},{"EN":1086},{"openalex":1103,"title":1105},{"VOID":1104},"A5078246410",{"EN":1106},"L. 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(2006). Fraxinus excelsior as a Biomonitor of Heavy Metal Pollution. Polish Journal of Environmental Studies, 15(1), 27–33.",{},{"id":18,"text":1215,"url":18,"identifiers":1216},"Antisari, L. V., Carbone, S., Ferronato, C., Simoni, A., & Vianello, G. (2012). Leaf washing as an assessment tool to characterize dry atmospheric deposition. Environmental Quality, 9, 37–50.",{},{"id":18,"text":1218,"url":18,"identifiers":1219},"Apeagyei, E., Bank, M. S., & Spengler, J. D. (2010). Distribution of heavy metals in road dust along an urban-rural gradient in Massachusetts. Atmospheric Environment, 45(13), 2310–2323.",{"doi":1220},"10.1016\u002Fj.atmosenv.2010.11.015",{"id":18,"text":1222,"url":18,"identifiers":1223},"Ataabadi, M., Hoodaji, M., & Najafi, P. (2012). Assessment of washing procedure for determination some of airborne metal concentrations. African Journal of Biotechnology, 11(19), 439–4395.",{"doi":1224},"10.5897\u002FAJB11.2781",{"id":18,"text":1226,"url":18,"identifiers":1227},"Aznar, J. C., Richer-Laflèche, M., Bégin, C., & Bégin, Y. (2009). Lead exclusion and copper translocation in black spruce needles. Water Air and Soil Pollution, 203(1–3), 139–145.",{"doi":1228},"10.1007\u002Fs11270-009-9997-8",{"id":18,"text":1230,"url":18,"identifiers":1231},"Badamasi, H. (2017). Biomonitoring of air pollution using plants. MAYFEB Journal of Environmental Science, 2, 27–39.",{},{"id":18,"text":1233,"url":18,"identifiers":1234},"Baidourela, A., & Zhayimu, K. (2015). Patterns of dust retention by urban trees in oasis cities. Nature Environment and Pollution Technology, 14(1), 53–57.",{},{"id":18,"text":1236,"url":18,"identifiers":1237},"Balasooriya, R., Samson, F., Mbikwa, U. W. A., Vitharana, P., Boeckx, M., & Meirvenne, V. (2009). Biomonitoring of urban habitat quality by anatomical and chemical leaf characteristics. Environmental and Experimental Botany, 65, 386–394.",{"doi":1238},"10.1016\u002Fj.envexpbot.2008.11.009",{"id":18,"text":1240,"url":18,"identifiers":1241},"Beckett, K. P., Freer-Smith, P. H., & Taylor, G. (1998). Urban woodlands: their role in reducing the effects of particulate pollution. Environmental Pollution, 99(3), 347–360.",{"doi":1242},"10.1016\u002FS0269-7491(98)00016-5",{"id":18,"text":1244,"url":18,"identifiers":1245},"Beckett, K. P., Freer-Smith, P. H., & Taylor, G. (2000a). Effective tree species for local air quality management. Journal of Arboriculture, 26, 12–19. https:\u002F\u002Fdoi.org\u002F10.1016\u002FS0269-7491(98)00016-25",{"doi":1246},"10.1016\u002FS0269-7491(98)00016-25",{"id":18,"text":1248,"url":18,"identifiers":1249},"Beckett, K. P., Freer-Smith, P. H., & Taylor, G. (2000b). Particulate pollution capture by urban trees: effect of species and windspeed. Global Change Biology, 6, 995–1003. https:\u002F\u002Fdoi.org\u002F10.1046\u002Fj.1365-2486.2000.00376.x",{"doi":1250},"10.1046\u002Fj.1365-2486.2000.00376.x",{"id":18,"text":1252,"url":18,"identifiers":1253},"Braun, M., Margitai, Z., Leermakers, M., & Finsy, R. (2007). Néhány erdélyi település környezeti állapotának jellemzése a falevelekre lerakódott por vizsgálata alapján. Anyagvizsgálatok Lapja, 17(1), 27–35.",{},{"id":18,"text":1255,"url":18,"identifiers":1256},"Chaudhary, I. J., & Rathore, D. (2018). Phytomonitoring of dust load and its effect on foliar micromorphological characteristics of urban trees. Plantica Journal of Plant Science, 2(3), 170–179.",{},{"id":18,"text":1258,"url":18,"identifiers":1259},"Chen, L., Liu, C., Zou, R., Yang, M., & Zhang, Z. (2016). Experimental examination of effectiveness of vegetation as bio-filter of particulate matters in the urban environment. Environmental Pollution, 208, 198–208.",{"doi":1260},"10.1016\u002Fj.envpol.2015.09.006",{"id":18,"text":1262,"url":18,"identifiers":1263},"Davidson, C. I., Phalen, R. F., & Solomon, P. A. (2005). Airborne particulate matter and human health: A review. Aerosol Science and Technology, 39(8), 737–749.",{"doi":1264},"10.1080\u002F02786820500191348",{"id":18,"text":1266,"url":18,"identifiers":1267},"Dzierżanowski, K., Popek, R., Gawrońska, H., Sæbø, A., & Gawroński, S. W. (2011). Deposition of particulate matter of different size fractions on leaf surfaces and in waxes of urban forest species. International Journal of Phytoremediation, 13(10), 1037–1046.",{"doi":1268},"10.1080\u002F15226514.2011.552929",{"id":18,"text":1270,"url":18,"identifiers":1271},"Guha, M. M., & Mitchell, R. L. (1966). The trace and major element composition of the leaves of some deciduous trees. Plant and Soil, 24(1), 90–112.",{"doi":1272},"10.1007\u002FBF01373076",{"id":18,"text":1274,"url":18,"identifiers":1275},"Hofman, J., Bartholomeus, H., Calders, K., Van Wittenberghe, S., Wuyts, K., & Samson, R. (2014). On the relation between tree crown morphology and particulate matter deposition on urban tree leaves: A ground-based LiDARapproach. Atmospheric Environment, 99, 130–139.",{"doi":1276},"10.1016\u002Fj.atmosenv.2014.09.031",{"id":18,"text":1278,"url":18,"identifiers":1279},"Hoodaji, M., Ataabadi, M., & Najafi, P. (2012). Biomonitoring of airborne heavy metal contamination. In M. Khare (Ed.), Air pollution-monitoring (pp. 97–122). InTech: Modelling, Health and Control.",{},{"id":18,"text":1281,"url":18,"identifiers":1282},"Hovmand, M. F., Nielsen, S. P., & Johnsen, I. (2009). Root uptake of lead by Norway spruce grown on 210Pb spiked soils. Environmental Pollution, 157(2), 404–409.",{"doi":1283},"10.1016\u002Fj.envpol.2008.09.038",{"id":18,"text":1285,"url":18,"identifiers":1286},"Hrotkó, K., Magyar, L., Borsos, G., & Gyeviki, M. (2014). Rootstock effect on nutrient concentration of sweet cherry leaves. Journal of Plant Nutrition, 37(9), 1395–1409.",{"doi":1287},"10.1080\u002F01904167.2014.911317",{"id":18,"text":1289,"url":18,"identifiers":1290},"Hrotkó, K., Steiner, M., Forrai, M., Tóth, E. G., Vértesy, M., Leelőssy, Á., et al. (2014). Investigations on environmental benefits of urban trees at Corvinus University of Budapest. In M. Raček (Ed.), Plants in Urban Areas and Landscape. Nitra: Slovak Agricultural University.",{},{"id":18,"text":1292,"url":18,"identifiers":1293},"AURORA AAS Trace series operation manual and Cookbook. (2005). Vancouver. Canada: AURORA Instruments Ltd.",{},{"id":18,"text":1295,"url":18,"identifiers":1296},"Jarvis, K. E., Gray, A. L., & Houk, R. S. (1994). Handbook of inductively coupled plasma mass spectrometry. London: Blackie Publication.",{},{"id":18,"text":1298,"url":18,"identifiers":1299},"Jensen, S., Eriksson, G., Kylin, H., & Strachan, W. M. J. (1992). Atmospheric pollution by persistent organic compounds: monitoring with pine needles. Chemosphere, 24, 229–245.",{"doi":1300},"10.1016\u002F0045-6535(92)90396-9",{"id":18,"text":1302,"url":18,"identifiers":1303},"Jim, C. Y., & Chen, W. Y. (2008). Assessing the ecosystem service of air pollutant removal by urban trees in Guangzhou (China). Journal of Environmental Management, 88(4), 665–676.",{"doi":1304},"10.1016\u002Fj.jenvman.2007.03.035",{"id":18,"text":1306,"url":18,"identifiers":1307},"Jo, H.-K., & McPherson, E. G. (1995). Carbon storage and flux in urban residential greenspace. Journal of Environmental Management, 45, 109–133.",{},{"id":18,"text":1309,"url":18,"identifiers":1310},"Hosker, R. P., & Lindbergh, S. E. (1982). Review: Atmospheric deposition and plant assimilation of gases and particles. Atmospheric Environment, 16(5), 889–910.",{"doi":1311},"10.1016\u002F0004-6981(82)90175-5",{"id":18,"text":1313,"url":18,"identifiers":1314},"Kampa, M., & Castanas, E. (2008). Human health effects of air pollution. Environmental Pollution, 151(2), 362–367.",{"doi":1315},"10.1016\u002Fj.envpol.2007.06.012",{"id":18,"text":1317,"url":18,"identifiers":1318},"Kim, N. D., & Fergusson, J. E. (1994). Seasonal variations in the concentrations of cadmium copper lead and zinc in leaves of the horse chesnut (Aesculus hippocastanum L). Environmental Pollution, 86(1), 89–97.",{"doi":1319},"10.1016\u002F0269-7491(94)90010-8",{"id":18,"text":1321,"url":18,"identifiers":1322},"Kretinin, V. M., & Selyanina, Z. M. (2006). Dust retention by tree and shrub leaves and its accumulation in light chestnut soils under forest shelterbelts. Eurasian Soil Science, 39(3), 334–338.",{"doi":1323},"10.1134\u002FS1064229306030136",{"id":18,"text":1325,"url":18,"identifiers":1326},"Krüssmann, G. J. (1976-78). Handbuch der Laubgehölze. Berlin, Hamburg: Paul Parey Verlag.",{},{"id":18,"text":1328,"url":18,"identifiers":1329},"Lu, X., Wang, L., Li, L., Lei, Y. K., Huang, L., & Kang, D. (2010). Multivariate statistical analysis of heavy metals in street dust of Baoji in NW China. Journal of Hazardous Materials, 173, 744–749.",{"doi":1330},"10.1016\u002Fj.jhazmat.2009.09.001",{"id":18,"text":1332,"url":18,"identifiers":1333},"Margitai, Z., & Braun, M. (2005a). Falevelekre rakódott por mennyiségének meghatározása turbidimetriás módszerrel. Műszeres Analitika, 4, 127–128.",{},{"id":18,"text":1335,"url":18,"identifiers":1336},"Margitai, Z., & Braun, M. (2005b). Nyolc európai város légszennyezettségének vizsgálata falevelekről gyűjtött por elemösszetételének diszkriminancia analízisével. Magyar Kémiai Folyóirat, 111(1), 38–41.",{},{"id":18,"text":1338,"url":18,"identifiers":1339},"Margitai, Z., Braun, M., & Posta, J. (2005). Légszennyezettség jellemzése a falevelekre ülepedett por szervetlen komponenseinek elemzése alapján. Műszeres Analitika, 2, 61–64.",{},{"id":18,"text":1341,"url":18,"identifiers":1342},"Mori, J., Sæbø, A., Hanslin, H. M., Teani, A., Ferrini, F., Fini, A., & Burchi, G. (2015). Deposition of traffic-related air pollutants on leaves of six evergreen shrub species during a Mediterranean summer season. Urban Forestry and Urban Greening, 14(2), 264–273.",{"doi":1343},"10.1016\u002Fj.ufug.2015.02.008",{"id":18,"text":1345,"url":18,"identifiers":1346},"Nowak, D. J., Crane, D. E., & Stevens, J. C. (2006). Air pollution removal by urban trees and shrubs in the United States. Urban forestry and Urban Greening, 4(3), 115–123.",{"doi":1347},"10.1016\u002Fj.ufug.2006.01.007",{"id":18,"text":1349,"url":18,"identifiers":1350},"Petkovšek, S. A. S., Batič, F., & Lasnik, C. R. (2008). Norway spruce needles as bioindicator of air pollution in the area of influence of the Šoštanj Thermal Power Plant Slovenia. Environmental Pollution, 151(2), 287–291.",{"doi":1351},"10.1016\u002Fj.envpol.2007.06.036",{"id":18,"text":1353,"url":18,"identifiers":1354},"Piczak, K., Leśniewicz, A., & Żyrnicki, W. (2003). Metal concentrations in deciduous tree leaves from urban areas in Poland. Environmental Monitoring and Assessment, 86(3), 273–287.",{"doi":1355},"10.1023\u002FA:1024076504099",{"id":18,"text":1357,"url":18,"identifiers":1358},"Rehder, A. (1940). Manual of cultivated trees and shrubs hardy in North America (2nd ed.). Portland, Oregon: Dioscoride Press.",{},{"id":18,"text":1360,"url":18,"identifiers":1361},"Sæbø, A., Popek, R., Nawrot, B., Hanslin, H. M., Gawronska, H., & Gawronski, S. W. (2012). Plant species differences in particulate matter accumulation on leaf surfaces. Science of the Total Environment, 427, 347–354.",{"doi":1362},"10.1016\u002Fj.scitotenv.2012.03.084",{"id":18,"text":1364,"url":18,"identifiers":1365},"Simon, E., Baranyai, E., Braun, M., Cserháti, C., Fábián, I., & Tóthmérész, B. (2014). Elemental concentrations in deposited dust on leaves along an urbanization gradient. Science of the Total Environment, 490, 514–520.",{"doi":1366},"10.1016\u002Fj.scitotenv.2014.05.028",{"id":18,"text":1368,"url":18,"identifiers":1369},"Simon, E., Braun, M., Vidic, A., Bogyó, D., Fábián, I., & Tótmérész, B. (2011). Air pollution assessment based on elemental concentration of leaves tissue and foliage dust along an urbanization gradient in Vienna. Environmental Pollution, 159(5), 1229–1233.",{"doi":1370},"10.1016\u002Fj.envpol.2011.01.034",{"id":18,"text":1372,"url":18,"identifiers":1373},"Steubing, L. (1982). Problems of bioindications and the necessity of standardization. In L. Steubing & H. J. Jäger (Eds.), Monitoring of air pollutants by plants, methods and problems (pp. 19–24). Hague: Dr. W Junk Publishers.",{},{"id":18,"text":1375,"url":18,"identifiers":1376},"Szaller, V., Szabó, V., Sütöriné, D. M., Magyar, L., & Hrotkó, K. (2014). Urban Alley Trees in Budapest. In M. Raćek (Ed.), Plants in Urban Areas and Landscape, Slovak Agricultural University. Faculty of Horticulture and Landscape Engineering: Nitra.",{},{"id":18,"text":1378,"url":18,"identifiers":1379},"Tandon, H. L. S. (ed.) (2013). Methods of analysis of soils, plants, waters, fertilisers and organic manures. Fertiliser Development and Consultation Organisation, (pp. 76-111). New Delhi",{},{"id":18,"text":1381,"url":18,"identifiers":1382},"TomaševićAničić, M. M. (2010). Trace element content in urban tree leaves and SEM-EDAX characterisation of deposited particles. Facta Universitatis, Series: Physics, Chemistry and Technology, 8(1), 1–13.",{},{"id":18,"text":1384,"url":18,"identifiers":1385},"Tomašević, M., Aničić, M., Jovanović, Lj., Perić-Grujić, A., & Ristić, M. (2011). Deciduous tree leaves in trace elements biomonitoring: A contribution to methodology. Ecological indicators, 11, 1689–1695.",{"doi":1386},"10.1016\u002Fj.ecolind.2011.04.017",{"id":18,"text":1388,"url":18,"identifiers":1389},"Tóth, E. G. Y., Juhász, Á., Sütöriné, D. M., Steiner, M., & Hrotkó, K. (2015). Leaf gas exchange characteristics of drought stressed linden trees. Applied Ecology and Environmental Research, 13(4), 1109–1120.",{"doi":1390},"10.15666\u002Faeer\u002F1304_11091120",{"id":18,"text":1392,"url":18,"identifiers":1393},"Trees and Shrubs Online. (2017). International Dendrology Society, https:\u002F\u002Ftreesandshrubsonline.org\u002F",{},{"id":18,"text":1395,"url":18,"identifiers":1396},"Uhrin, P., Supuka, J. (2018). Adaptability assessment of Norway maple (Acer platanoides L.) on urban environment in Nitra town. Plants in Urban Areas and Landscape In: Conference proceedings, Nitra Agricultural University, 70.",{},{"id":18,"text":1398,"url":18,"identifiers":1399},"Winge, R. K., Fassel, V. A., Patterson, V. J., & Floyd, M. A. (1985). Inductively coupled plasma atomic emission spectrometry An Atlas of Spectral Information. London: Elsevier.",{},{"id":18,"text":1401,"url":18,"identifiers":1402},"Yang, J., McBridea, J., Zhoub, J., & Sun, Z. (2005). The urban forest in Beijing and its role in air pollution reduction. Urban Forestry and Urban Greening, 3, 65–78.",{"doi":1403},"10.1016\u002Fj.ufug.2004.09.001",{"id":18,"text":1405,"url":18,"identifiers":1406},"Yuan, Q., Dongsheng, G., Weiwei, S., & Kangyou, H. (2009). Capture of heavy metals and sulfur by foliar dust in urban Huizhou, Guangdong Province, China. 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(2006). Trace metal concentrations in street dusts of Dhaka city, Bangladesh. Atmospheric Environment, 40(21), 3835–3844. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.atmosenv.2006.03.004.",{"doi":1563},"10.1016\u002Fj.atmosenv.2006.03.004",{"id":18,"text":1565,"url":18,"identifiers":1566},"anon. (2015). Bangalore ranks 12th in list of world’s top 20 tech-rich cities: The Economic Times. Economic Times-India Times. https:\u002F\u002Feconomictimes.indiatimes.com\u002Fnews\u002Feconomy\u002Findicators\u002Fbangalore-ranks-12th-in-list-of-worlds-top-20-tech-rich-cities\u002Farticleshow\u002F47958523.cms. Accessed 4 April 2019.",{},{"id":18,"text":1568,"url":18,"identifiers":1569},"anon. (2018). Kolkata tops in public transport: Study|India News—Times of India. The Times of India. https:\u002F\u002Ftimesofindia.indiatimes.com\u002Findia\u002Fkolkata-tops-in-public-transport-study\u002Farticleshow\u002F66476386.cms. Accessed 3 April 2019.",{},{"id":18,"text":1571,"url":18,"identifiers":1572},"anon. (2019a). Kolkata climate: Average temperature, weather by month, Kolkata weather averages—Climate-Data.org. Climate-Data.Org. https:\u002F\u002Fen.climate-data.org\u002Fasia\u002Findia\u002Fwest-bengal\u002Fkolkata-2826\u002F. Accessed 4 April 2019.",{},{"id":18,"text":1574,"url":18,"identifiers":1575},"anon. (2019b). Bengaluru climate: Average temperature, weather by month, Bengaluru weather averages—Climate-Data.org. Climate-Data.Org. https:\u002F\u002Fen.climate-data.org\u002Fasia\u002Findia\u002Fkarnataka\u002Fbengaluru-4562\u002F. Accessed 4 April 2019.",{},{"id":18,"text":1577,"url":18,"identifiers":1578},"Atiemo, S. M., Ofosu, F. G., Aboh, I. J. K., & Oppon, O. C. (2012). Levels and sources of heavy metal contamination in road dust in selected major highways of Accra, Ghana. X-Ray Spectrometry, 41(2), 105–110. https:\u002F\u002Fdoi.org\u002F10.1002\u002Fxrs.2374.",{"doi":1579},"10.1002\u002Fxrs.2374",{"id":18,"text":1581,"url":18,"identifiers":1582},"Banerjee, A. D. K. (2003). Heavy metal levels and solid phase speciation in street dusts of Delhi, India. Environmental Pollution, 123(1), 95–105. https:\u002F\u002Fdoi.org\u002F10.1016\u002FS0269-7491(02)00337-8.",{"doi":1583},"10.1016\u002FS0269-7491(02)00337-8",{"id":18,"text":1585,"url":18,"identifiers":1586},"Census of India. (2011). Provisional population totals, census of India 2011 urban agglomerations\u002Fcities having population 1 lakh and above District Name of Urban Code Agglomeration\u002FCity Provisional Population Totals, Census of India 2011 Urban Agglomerations\u002FCities havin.",{},{"id":18,"text":1588,"url":18,"identifiers":1589},"Chatterjee, A., & Banerjee, R. N. (1999). Determination of lead and other metals in a residential area of greater Calcutta. Science of the Total Environment, 227(2–3), 175–185. https:\u002F\u002Fdoi.org\u002F10.1016\u002FS0048-9697(99)00026-1.",{"doi":1590},"10.1016\u002FS0048-9697(99)00026-1",{"id":18,"text":1592,"url":18,"identifiers":1593},"Chaudhuri, A. (2012). The city that got left behind—Reviving Kolkata. The Economist. https:\u002F\u002Fwww.economist.com\u002Fasia\u002F2012\u002F01\u002F07\u002Fthe-city-that-got-left-behind. Accessed 4 April 2019.",{},{"id":18,"text":1595,"url":18,"identifiers":1596},"Checkoway, H., Heyer, N. J., Seixas, N. S., Welp, E. A. E., Demers, P. A., Hughes, J. M., et al. (1997). Dose-response associations of silica with nonmalignant respiratory disease and lung cancer mortality in the diatomaceous earth industry. American Journal of Epidemiology, 145(8), 680–688. https:\u002F\u002Fdoi.org\u002F10.1093\u002Faje\u002F145.8.680.",{"doi":1597},"10.1093\u002Faje\u002F145.8.680",{"id":18,"text":1599,"url":18,"identifiers":1600},"Chen, P., Bi, X., Zhang, J., Wu, J., & Feng, Y. (2015). Assessment of heavy metal pollution characteristics and human health risk of exposure to ambient PM2.5 in Tianjin, China. Particuology, 20, 104–109. https:\u002F\u002Fdoi.org\u002F10.1016\u002FJ.PARTIC.2014.04.020.",{"doi":1601},"10.1016\u002FJ.PARTIC.2014.04.020",{"id":18,"text":1603,"url":18,"identifiers":1604},"Chen, H., Lu, X., Li, L. Y., Gao, T., & Chang, Y. (2014). Metal contamination in campus dust of Xi’an, China: A study based on multivariate statistics and spatial distribution. Science of the Total Environment, 484(1), 27–35. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.scitotenv.2014.03.026.",{"doi":1605},"10.1016\u002Fj.scitotenv.2014.03.026",{"id":18,"text":1607,"url":18,"identifiers":1608},"Chutke, N. L., Ambulkar, M. N., Aggarwal, A. L., & Garg, A. N. (1994). Instrumental neutron activation analysis of ambient air dust particulates from metropolitan cities in India. Environmental Pollution, 85(1), 67–76. https:\u002F\u002Fdoi.org\u002F10.1016\u002F0269-7491(94)90239-9.",{"doi":1609},"10.1016\u002F0269-7491(94)90239-9",{"id":18,"text":1611,"url":18,"identifiers":1612},"Cox, W. (2019). Demographia world urban areas: 15 th annual addition. Demographia, 15th edn. NewGeography.com. http:\u002F\u002Fwww.demographia.com\u002Fdb-worldua.pdf.",{},{"id":18,"text":1614,"url":18,"identifiers":1615},"Das, A., Krishna, K., Kumar, R., Das, A., Sengupta, S., & Ghosh, J. G. (2016). Tracing lead contamination in foods in the city of Kolkata, India. Environmental Science and Pollution Research, 23(22), 22454–22466. https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs11356-016-7409-3.",{"doi":1616},"10.1007\u002Fs11356-016-7409-3",{"id":18,"text":1618,"url":18,"identifiers":1619},"Denys, S., Caboche, J., Tack, K., Rychen, G., Wragg, J., Cave, M., et al. (2012). In vivo validation of the unified BARGE method to assess the bioaccessibility of arsenic, antimony, cadmium, and lead in soils. Environmental Science and Technology, 46(11), 6252–6260. https:\u002F\u002Fdoi.org\u002F10.1021\u002Fes3006942.",{"doi":1620},"10.1021\u002Fes3006942",{"id":18,"text":1622,"url":18,"identifiers":1623},"Du, Y., Gao, B., Zhou, H., Ju, X., Hao, H., & Yin, S. (2013). Health risk assessment of heavy metals in road dusts in urban parks of Beijing, China. Procedia Environmental Sciences, 18, 299–309. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.proenv.2013.04.039.",{"doi":1624},"10.1016\u002Fj.proenv.2013.04.039",{"id":18,"text":1626,"url":18,"identifiers":1627},"Duan, Z., Wang, J., Xuan, B., Cai, X., & Zhang, Y. (2018). Spatial distribution and health risk assessment of heavy metals in urban road dust of Guiyang, China.",{},{"id":18,"text":1629,"url":18,"identifiers":1630},"Duong, T. T. T., & Lee, B. K. (2011). Determining contamination level of heavy metals in road dust from busy traffic areas with different characteristics. Journal of Environmental Management, 92(3), 554–562. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.jenvman.2010.09.010.",{"doi":1631},"10.1016\u002Fj.jenvman.2010.09.010",{"id":18,"text":1633,"url":18,"identifiers":1634},"Ferreira-Baptista, L., & De Miguel, E. (2005). Geochemistry and risk assessment of street dust in Luanda, Angola: A tropical urban environment. Atmospheric Environment, 39(25), 4501–4512. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.atmosenv.2005.03.026.",{"doi":1635},"10.1016\u002Fj.atmosenv.2005.03.026",{"id":18,"text":1637,"url":18,"identifiers":1638},"Fujiwara, F., Rebagliati, R. J., Marrero, J., Gómez, D., & Smichowski, P. (2011). Antimony as a traffic-related element in size-fractionated road dust samples collected in Buenos Aires. Microchemical Journal, 97(1), 62–67. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.microc.2010.05.006.",{"doi":1639},"10.1016\u002Fj.microc.2010.05.006",{"id":18,"text":1641,"url":18,"identifiers":1642},"Gope, M., Masto, R. E., George, J., Hoque, R. R., & Balachandran, S. (2017). Bioavailability and health risk of some potentially toxic elements (Cd, Cu, Pb and Zn) in street dust of Asansol, India. Ecotoxicology and Environmental Safety. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.ecoenv.2017.01.008.",{"doi":1643},"10.1016\u002Fj.ecoenv.2017.01.008",{"id":18,"text":1645,"url":18,"identifiers":1646},"Gunawardana, C., Goonetilleke, A., Egodawatta, P., Dawes, L., & Kokot, S. (2012). Source characterisation of road dust based on chemical and mineralogical composition. Chemosphere, 87(2), 163–170. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.chemosphere.2011.12.012.",{"doi":1647},"10.1016\u002Fj.chemosphere.2011.12.012",{"id":18,"text":1649,"url":18,"identifiers":1650},"Gupta, A. K., Karar, K., & Srivastava, A. (2007). Chemical mass balance source apportionment of PM10and TSP in residential and industrial sites of an urban region of Kolkata, India. Journal of Hazardous Materials, 142(1–2), 279–287. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.jhazmat.2006.08.013.",{"doi":1651},"10.1016\u002Fj.jhazmat.2006.08.013",{"id":18,"text":1653,"url":18,"identifiers":1654},"Hamilton, E. M., Barlow, T. S., Gowing, C. J. B., & Watts, M. J. (2015). Bioaccessibility performance data for fifty-seven elements in guidance material BGS 102. Microchemical Journal, 123, 131–138. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.microc.2015.06.001.",{"doi":1655},"10.1016\u002Fj.microc.2015.06.001",{"id":18,"text":1657,"url":18,"identifiers":1658},"Herath, D., Pitawala, A., & Gunatilake, J. (2016). Heavy metals in road deposited sediments and road dusts of Colombo Capital, Sri Lanka. Journal of the National Science Foundation of Sri Lanka, 44(2), 193. https:\u002F\u002Fdoi.org\u002F10.4038\u002Fjnsfsr.v44i2.8000.",{"doi":1659},"10.4038\u002Fjnsfsr.v44i2.8000",{"id":18,"text":1661,"url":18,"identifiers":1662},"Hu, X., Zhang, Y., Luo, J., Wang, T., Lian, H., & Ding, Z. (2011). Bioaccessibility and health risk of arsenic, mercury and other metals in urban street dusts from a mega-city, Nanjing, China. Environmental Pollution, 159(5), 1215–1221. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.envpol.2011.01.037.",{"doi":1663},"10.1016\u002Fj.envpol.2011.01.037",{"id":18,"text":1665,"url":18,"identifiers":1666},"Huang, M., Wang, W., Leung, H., Yu Chan, C., Keung Liu, W., Hung Wong, M., et al. (2012). Mercury levels in road dust and household TSP\u002FPM2.5related to concentrations in hair in Guangzhou, China. Ecotoxicology and Environmental Safety, 81, 27–35. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.ecoenv.2012.04.010.",{"doi":1667},"10.1016\u002Fj.ecoenv.2012.04.010",{"id":18,"text":1669,"url":18,"identifiers":1670},"Juhasz, A. L., Weber, J., & Smith, E. (2011). Impact of soil particle size and bioaccessibility on children and adult lead exposure in peri-urban contaminated soils. Journal of Hazardous Materials, 186(2–3), 1870–1879. https:\u002F\u002Fdoi.org\u002F10.1016\u002FJ.JHAZMAT.2010.12.095.",{"doi":1671},"10.1016\u002FJ.JHAZMAT.2010.12.095",{"id":18,"text":1673,"url":18,"identifiers":1674},"Karar, K., & Gupta, A. K. (2006). Seasonal variations and chemical characterization of ambient PM10at residential and industrial sites of an urban region of Kolkata (Calcutta), India. Atmospheric Research, 81(1), 36–53. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.atmosres.2005.11.003.",{"doi":1675},"10.1016\u002Fj.atmosres.2005.11.003",{"id":18,"text":1677,"url":18,"identifiers":1678},"Keuken, M. P., Moerman, M., Voogt, M., Blom, M., Weijers, E. P., Röckmann, T., et al. (2013). Source contributions to PM2.5 and PM10 at an urban background and a street location. Atmospheric Environment, 71, 26–35. https:\u002F\u002Fdoi.org\u002F10.1016\u002FJ.ATMOSENV.2013.01.032.",{"doi":1679},"10.1016\u002FJ.ATMOSENV.2013.01.032",{"id":18,"text":1681,"url":18,"identifiers":1682},"Khairy, M. A., Barakat, A. O., Mostafa, A. R., & Wade, T. L. (2011). Multielement determination by flame atomic absorption of road dust samples in Delta Region, Egypt. Microchemical Journal, 97(2), 234–242. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.microc.2010.09.012.",{"doi":1683},"10.1016\u002Fj.microc.2010.09.012",{"id":18,"text":1685,"url":18,"identifiers":1686},"Klein, D. H., & Russell, P. (1973). Heavy metals: fallout around a power plant. Environmental Science and Technology, 7(4), 357–358. https:\u002F\u002Fdoi.org\u002F10.1021\u002Fes60076a004.",{"doi":1687},"10.1021\u002Fes60076a004",{"id":18,"text":1689,"url":18,"identifiers":1690},"Kong, S., Lu, B., Ji, Y., Zhao, X., Chen, L., Li, Z., et al. (2011). Levels, risk assessment and sources of PM10 fraction heavy metals in four types dust from a coal-based city. Microchemical Journal, 98(2), 280–290. https:\u002F\u002Fdoi.org\u002F10.1016\u002FJ.MICROC.2011.02.012.",{"doi":1691},"10.1016\u002FJ.MICROC.2011.02.012",{"id":18,"text":1693,"url":18,"identifiers":1694},"Kumar, M., Furumai, H., Kurisu, F., & Kasuga, I. (2013). Tracing source and distribution of heavy metals in road dust, soil and soakaway sediment through speciation and isotopic fingerprinting. Geoderma, 211–212, 8–17. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.geoderma.2013.07.004.",{"doi":1695},"10.1016\u002Fj.geoderma.2013.07.004",{"id":18,"text":1697,"url":18,"identifiers":1698},"Kumar, A. V., Patil, R. S., & Nambi, K. S. V. (2001). Source apportionment of suspended particulate matter at two traffic junctions in Mumbai, India. Atmospheric Environment, 35(25), 4245–4251. https:\u002F\u002Fdoi.org\u002F10.1016\u002FS1352-2310(01)00258-8.",{"doi":1699},"10.1016\u002FS1352-2310(01)00258-8",{"id":18,"text":1701,"url":18,"identifiers":1702},"Li, H., Shi, A., & Zhang, X. (2015). Particle size distribution and characteristics of heavy metals in road-deposited sediments from Beijing Olympic Park. Journal of Environmental Sciences (China), 32, 228–237. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.jes.2014.11.014.",{"doi":1703},"10.1016\u002Fj.jes.2014.11.014",{"id":18,"text":1705,"url":18,"identifiers":1706},"Liu, A., Liu, L., Li, D., & Guan, Y. (2015). Characterizing heavy metal build-up on urban road surfaces: Implication for stormwater reuse. Science of the Total Environment, 515–516, 20–29. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.scitotenv.2015.02.026.",{"doi":1707},"10.1016\u002Fj.scitotenv.2015.02.026",{"id":18,"text":1709,"url":18,"identifiers":1710},"Liu, E., Yan, T., Birch, G., & Zhu, Y. (2014). Pollution and health risk of potentially toxic metals in urban road dust in Nanjing, a mega-city of China. Science of the Total Environment, 476–477, 522–531. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.scitotenv.2014.01.055.",{"doi":1711},"10.1016\u002Fj.scitotenv.2014.01.055",{"id":18,"text":1713,"url":18,"identifiers":1714},"Lorenzi, D., Entwistle, J. A., Cave, M., & Dean, J. R. (2011). Determination of polycyclic aromatic hydrocarbons in urban street dust: Implications for human health. Chemosphere, 83(7), 970–977. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.chemosphere.2011.02.020.",{"doi":1715},"10.1016\u002Fj.chemosphere.2011.02.020",{"id":18,"text":1717,"url":18,"identifiers":1718},"Lu, X., Wang, L., Li, L. Y., Lei, K., Huang, L., & Kang, D. (2010). Multivariate statistical analysis of heavy metals in street dust of Baoji, NW China. Journal of Hazardous Materials, 173(1–3), 744–749. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.jhazmat.2009.09.001.",{"doi":1330},{"id":18,"text":1720,"url":18,"identifiers":1721},"Men, C., Liu, R., Wang, Q., Guo, L., & Shen, Z. (2018a). The impact of seasonal varied human activity on characteristics and sources of heavy metals in metropolitan road dusts. Science of the Total Environment, 637–638, 844–854. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.scitotenv.2018.05.059.",{"doi":1722},"10.1016\u002Fj.scitotenv.2018.05.059",{"id":18,"text":1724,"url":18,"identifiers":1725},"Men, C., Liu, R., Xu, F., Wang, Q., Guo, L., & Shen, Z. (2018b). Pollution characteristics, risk assessment, and source apportionment of heavy metals in road dust in Beijing, China. Science of the Total Environment, 612, 138–147. https:\u002F\u002Fdoi.org\u002F10.1016\u002FJ.SCITOTENV.2017.08.123.",{"doi":1726},"10.1016\u002FJ.SCITOTENV.2017.08.123",{"id":18,"text":1728,"url":18,"identifiers":1729},"Moudgal, S. (2018). Bengaluru worse than Delhi in pollution levels: CPCB|Bengaluru News—Times of India. Times of India. https:\u002F\u002Fm.timesofindia.com\u002Fcity\u002Fbengaluru\u002Fbengaluru-worse-than-delhi-in-pollution-levels-cpcb\u002Famp_articleshow\u002F65380612.cms. Accessed 4 April 2019.",{},{"id":18,"text":1731,"url":18,"identifiers":1732},"Mummullage, S., Egodawatta, P., Ayoko, G. A., & Goonetilleke, A. (2016). Use of physicochemical signatures to assess the sources of metals in urban road dust. Science of the Total Environment, 541, 1303–1309. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.scitotenv.2015.10.032.",{"doi":1733},"10.1016\u002Fj.scitotenv.2015.10.032",{"id":18,"text":1735,"url":18,"identifiers":1736},"Najmeddin, A., Keshavarzi, B., Moore, F., & Lahijanzadeh, A. (2017). Source apportionment and health risk assessment of potentially toxic elements in road dust from urban industrial areas of Ahvaz megacity, Iran. Environmental Geochemistry and Health, 40(4), 1187–1208. https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs10653-017-0035-2.",{"doi":1737},"10.1007\u002Fs10653-017-0035-2",{"id":18,"text":1739,"url":18,"identifiers":1740},"Padoan, E., Romè, C., & Ajmone-Marsan, F. (2017). Bioaccessibility and size distribution of metals in road dust and roadside soils along a peri-urban transect. Science of the Total Environment, 601–602, 89–98. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.scitotenv.2017.05.180.",{"doi":1741},"10.1016\u002Fj.scitotenv.2017.05.180",{"id":18,"text":1743,"url":18,"identifiers":1744},"Pan, H., Lu, X., & Lei, K. (2017). A comprehensive analysis of heavy metals in urban road dust of Xi’an, China: Contamination, source apportionment and spatial distribution. Science of the Total Environment, 609, 1361–1369. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.scitotenv.2017.08.004.",{"doi":1745},"10.1016\u002Fj.scitotenv.2017.08.004",{"id":18,"text":1747,"url":18,"identifiers":1748},"Pathak, A. K., Yadav, S., Kumar, P., & Kumar, R. (2013). Source apportionment and spatial-temporal variations in the metal content of surface dust collected from an industrial area adjoining Delhi, India. Science of the Total Environment, 443, 662–672. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.scitotenv.2012.11.030.",{"doi":1749},"10.1016\u002Fj.scitotenv.2012.11.030",{"id":18,"text":1751,"url":18,"identifiers":1752},"PNUD. (2009). World Urbanization Prospects: The 2009 Revision—Urban and rural population, 55. http:\u002F\u002Fknoema.com\u002FUNWUP2009RURP\u002Fworld-urbanization-prospects-the-2009-revision-urban-and-rural-population-march-2010.",{},{"id":18,"text":1754,"url":18,"identifiers":1755},"Putaud, J. P., Raes, F., Van Dingenen, R., Brüggemann, E., Facchini, M. C., Decesari, S., et al. (2004). A European aerosol phenomenology—2: Chemical characteristics of particulate matter at kerbside, urban, rural and background sites in Europe. Atmospheric Environment, 38(16), 2579–2595. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.atmosenv.2004.01.041.",{"doi":1756},"10.1016\u002Fj.atmosenv.2004.01.041",{"id":18,"text":1758,"url":18,"identifiers":1759},"Querol, X., Sánchez de la Campa, A. M., Alastuey, A., González-Castanedo, Y., Fernández-Camacho, R., Pio, C., et al. (2010). High concentrations of heavy metals in PM from ceramic factories of Southern Spain. Atmospheric Research, 96(4), 633–644. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.atmosres.2010.02.011.",{"doi":1760},"10.1016\u002Fj.atmosres.2010.02.011",{"id":18,"text":1762,"url":18,"identifiers":1763},"Rajaram, B. S., Suryawanshi, P. V., Bhanarkar, A. D., & Rao, C. V. C. (2014). Heavy metals contamination in road dust in Delhi city, India. Environmental Earth Sciences, 72(10), 3929–3938. https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs12665-014-3281-y.",{"doi":1764},"10.1007\u002Fs12665-014-3281-y",{"id":18,"text":1766,"url":18,"identifiers":1767},"Reddy, M. S., Basha, S., Joshi, H. V., & Jha, B. (2005). Evaluation of the emission characteristics of trace metals from coal and fuel oil fired power plants and their fate during combustion. Journal of Hazardous Materials, 123(1–3), 242–249. https:\u002F\u002Fdoi.org\u002F10.1016\u002FJ.JHAZMAT.2005.04.008.",{"doi":1768},"10.1016\u002FJ.JHAZMAT.2005.04.008",{"id":18,"text":1770,"url":18,"identifiers":1771},"Rudnick, R. L., & Gao, S. (2003). Composition of the continental crust. Treatise on Geochemistry, 3, 1–64. https:\u002F\u002Fdoi.org\u002F10.1016\u002FB0-08-043751-6\u002F03016-4.",{"doi":1772},"10.1016\u002FB0-08-043751-6\u002F03016-4",{"id":18,"text":1774,"url":18,"identifiers":1775},"Shankar, B. (2009). Chromium pollution in the ground waters of an industrial area in Bangalore, India. Environmental Engineering Science. https:\u002F\u002Fdoi.org\u002F10.1089\u002Fees.2008.0043.",{"doi":1776},"10.1089\u002Fees.2008.0043",{"id":18,"text":1778,"url":18,"identifiers":1779},"Shi, D., & Lu, X. (2018). Accumulation degree and source apportionment of trace metals in smaller than 63 μm road dust from the areas with different land uses: A case study of Xi’an, China. Science of the Total Environment, 636, 1211–1218. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.scitotenv.2018.04.385.",{"doi":1780},"10.1016\u002Fj.scitotenv.2018.04.385",{"id":18,"text":1782,"url":18,"identifiers":1783},"Singh, A. K. (2011). Elemental chemistry and geochemical partitioning of heavy metals in road dust from Dhanbad and Bokaro regions, India. Environmental Earth Sciences, 62(7), 1447–1459. https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs12665-010-0630-3.",{"doi":1784},"10.1007\u002Fs12665-010-0630-3",{"id":18,"text":1786,"url":18,"identifiers":1787},"SNIFFER. (2007). Environmental Legislation and Human Health: Guidance for Assessing Risk (August). http:\u002F\u002Fwww.sniffer.org.uk\u002Ffiles\u002F1613\u002F4183\u002F7999\u002FUKCC02_guidance.pdf.",{},{"id":18,"text":1789,"url":18,"identifiers":1790},"Thorpe, A., & Harrison, R. M. (2008). Sources and properties of non-exhaust particulate matter from road traffic: A review. Science of the Total Environment, 400(1–3), 270–282. https:\u002F\u002Fdoi.org\u002F10.1016\u002FJ.SCITOTENV.2008.06.007.",{"doi":1791},"10.1016\u002FJ.SCITOTENV.2008.06.007",{"id":18,"text":1793,"url":18,"identifiers":1794},"Turner, A. (2016). Heavy metals, metalloids and other hazardous elements in marine plastic litter. Marine Pollution Bulletin, 111(1–2), 136–142. https:\u002F\u002Fdoi.org\u002F10.1016\u002FJ.MARPOLBUL.2016.07.020.",{"doi":1795},"10.1016\u002FJ.MARPOLBUL.2016.07.020",{"id":18,"text":1797,"url":18,"identifiers":1798},"USEPA. (2002). Supplemental guidance for developing soil screening levels for superfund sites. Office of Solid Waste and Emergency Response (OSWER) (December). https:\u002F\u002Fnepis.epa.gov\u002FExe\u002FZyPDF.cgi\u002F91003IJK.PDF?Dockey=91003IJK.PDF.",{},{"id":18,"text":1800,"url":18,"identifiers":1801},"USEPA. (2007). Estimation of relative bioavailability of lead in soil and soil-like materials using in vivo and in vitro methods Office of Solid Waste and Emergency Response. Environmental Protection (May). https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.jphotochem.2008.02.027.",{"doi":1802},"10.1016\u002Fj.jphotochem.2008.02.027",{"id":18,"text":1804,"url":18,"identifiers":1805},"Valdés, A., Polvé, M., Munoz, M., Toutain, J. P., & Morata, D. (2013). Geochemical features of aerosols in Santiago de Chile from time series analysis. 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Emerging Contaminants and the Implications for Drinking Water. International Journal of Water Resources Development, 28, 247–263.",{"doi":2275},"10.1080\u002F07900627.2012.672394",{"id":18,"text":2277,"url":18,"identifiers":2278},"FDA (Food and Drug Administration). (2013). Approved drug products with therapeutic equivalence evaluations. Rockville, MD: Center for Drug Evaluation and Research.",{},{"id":18,"text":2280,"url":18,"identifiers":2281},"Fent, L., Weston, A. A., & Caminada, D. (2006). Ecotoxicology of human pharmaceuticals. Aquatic Toxicology, 76, 122–159.",{"doi":2282},"10.1016\u002Fj.aquatox.2005.09.009",{"id":18,"text":2284,"url":18,"identifiers":2285},"Gao, L. H., Shi, Y. L., Li, W. H., Liu, J. M., & Cai, Y. Q. (2012). Occurrence, distribution and bioaccumulation of antibiotics in the Haihe River in China. Journal of Environmental Monitoring JEM, 14, 1248–1255.",{"doi":2286},"10.1039\u002Fc2em10916f",{"id":18,"text":2288,"url":18,"identifiers":2289},"Gottschall, N., Topp, E., Metcalfe, C., Edwards, M., Payne, M., Kleywegt, S., et al. (2012). Pharmaceutical and personal care products in groundwater, subsurface drainage, soil, and wheat grain, following a high single application of municipal biosolids to a field. Chemosphere, 87, 194–203.",{"doi":2290},"10.1016\u002Fj.chemosphere.2011.12.018",{"id":18,"text":2292,"url":18,"identifiers":2293},"Guo, W., Pei, Y. S., Yang, Z. F., & Wang, C. H. (2011). Assessment on the distribution and portioning characteristics of polycyclic aromatic hydrocarbons (PAHs) in Lake Baiyangdian, a shallow freshwater lake in China. Journal of Environmental and Monitoring, 13, 681–688.",{"doi":2294},"10.1039\u002Fc0em00583e",{"id":18,"text":2296,"url":18,"identifiers":2297},"Hawthorne, S. B., Grabanski, C. B., Miller, D. J., & Kreitinger, J. P. (2005). Solid-phase micro-extraction measurement of parent and alkyl polycyclic aromatic hydrocarbons in milliliter sediment pore water samples and determination of KDOC values. Environmental Science and Technology, 39, 2795–2803.",{"doi":2298},"10.1021\u002Fes0405171",{"id":18,"text":2300,"url":18,"identifiers":2301},"Hernando, M. D., Mezcua, M., Fernández-Alba, A. R., & Barceló, D. (2006). Environmental risk assessment of pharmaceutical residues in wastewater effluents, surface waters and sediments. Talanta, 69, 334–342.",{"doi":2302},"10.1016\u002Fj.talanta.2005.09.037",{"id":18,"text":2304,"url":18,"identifiers":2305},"Hirsch, R., Ternes, T., Haberer, K., & Kratz, K. L. (1999). Occurrence of antibiotics in the aquatic environment. Science of the Total Environment, 225, 109–118.",{"doi":2306},"10.1016\u002FS0048-9697(98)00337-4",{"id":18,"text":2308,"url":18,"identifiers":2309},"Hu, G. C., Dai, J. Y., Xu, Z. C., Luo, X. J., Cao, H., & Wang, J. S. (2010). Bioaccumulation behavior of polybrominated diphenyl ethers (PBDEs) in the freshwater food chain of Baiyangdian Lake, North China. Environment International, 36, 309–315.",{"doi":2310},"10.1016\u002Fj.envint.2010.01.002",{"id":18,"text":2312,"url":18,"identifiers":2313},"Jacobsen, A. M., Halling-Sørensen, B., & Hansen, S. H. (2004). Simultaneous extraction of tetracycline, macrolide and sulfonamide antibiotics from agricultural soils using pressurised liquid extraction, followed by solid-phase extraction and liquid chromatography-tandem mass spectrometry. Journal of Chromatography A, 1038, 157–170.",{"doi":2314},"10.1016\u002Fj.chroma.2004.03.034",{"id":18,"text":2316,"url":18,"identifiers":2317},"Kasprzyk-Hordern, B., Dinsdale, R. M., & Guwy, A. J. (2009). The removal of pharmaceuticals, personal care products, endocrine disruptors and illicit drugs during wastewater treatment and its impact on the quality of receiving waters. Water Research, 43, 363–380.",{"doi":2318},"10.1016\u002Fj.watres.2008.10.047",{"id":18,"text":2320,"url":18,"identifiers":2321},"Kim, S. C., & Carlson, K. (2006). Occurrence of ionophore antibiotics in water and sediments of a mixed-landscape watershed. Water Research, 40, 2549–2560.",{"doi":2322},"10.1016\u002Fj.watres.2006.04.036",{"id":18,"text":2324,"url":18,"identifiers":2325},"Kim, S. C., & Carlson, K. (2007). Temporal and spatial trends in the occurrence of human and veterinary antibiotics in aqueous and river sediment matrices. Environmental Science and Technology, 41, 50–57.",{"doi":2326},"10.1021\u002Fes060737+",{"id":18,"text":2328,"url":18,"identifiers":2329},"Kobayashi, T., Suehiro, F., Tuyen, B. S., et al. (2007). Distribution and diversity of tetracycline resistance genes encoding ribosomal protection proteins in Mekong river sediments in Vietnam. FEMS Microbiology Ecology, 59(3), 729–737.",{"doi":2330},"10.1111\u002Fj.1574-6941.2006.00244.x",{"id":18,"text":2332,"url":18,"identifiers":2333},"Li, W. H., Gao, L. R., Shi, Y. L., Liu, J. M., & Cai, Y. Q. (2015). Occurrence, distribution and risks of antibiotics in urban surface water in Beijing, China. Environmental Science: Process Impacts, 17, 1611–1619.",{},{"id":18,"text":2335,"url":18,"identifiers":2336},"Li, W. H., Shi, Y. L., Gao, L. H., Liu, J. M., & Cai, Y. Q. (2012). Occurrence of antibiotics in water, sediments, aquatic plants, and animals from Baiyangdian Lake in North China. Chemosphere, 89, 1307–1315.",{"doi":2337},"10.1016\u002Fj.chemosphere.2012.05.079",{"id":18,"text":2339,"url":18,"identifiers":2340},"Liang, X. M., Chen, B. W., Nie, X. P., Shi, Z., Huang, X. P., & Li, X. D. (2013). The distribution and partitioning of common antibiotics in water and sediment of the Pearl River Estuary, South China. Chemosphere, 92, 1410–1416.",{"doi":2341},"10.1016\u002Fj.chemosphere.2013.03.044",{"id":18,"text":2343,"url":18,"identifiers":2344},"Lin, T., Yu, S. L., & Chen, W. (2016). Occurrence, removal and risk assessment of pharmaceutical and personal care products (PPCPs) in an advanced drinking water treatment plant (ADWTP) around Taihu Lake in China. Chemosphere, 152, 1–9.",{"doi":2345},"10.1016\u002Fj.chemosphere.2016.02.109",{"id":18,"text":2347,"url":18,"identifiers":2348},"Liu, J. L., & Wong, M. H. (2013). Pharmaceuticals and personal care products (PPCPs): A review on environmental contamination in China. Environmental International, 59, 208–224.",{"doi":2349},"10.1016\u002Fj.envint.2013.06.012",{"id":18,"text":2351,"url":18,"identifiers":2352},"Loos, R., Gawlik, B. M., Locoro, G., Rimaviciute, E., Contini, S., & Bidoglio, G. (2009). EUwide survey of polar organic persistent pollutants in European river waters. Environmental Pollution, 157, 561–568.",{"doi":2353},"10.1016\u002Fj.envpol.2008.09.020",{"id":18,"text":2355,"url":18,"identifiers":2356},"Mackay, D., & Barnthouse, L. (2010). Integrated risk assessement of household chemicals and consumer products: Addressing concerns about triclosan. Integrated Environmental Assessment Management, 6, 390–392.",{"doi":2357},"10.1002\u002Fieam.73",{"id":18,"text":2359,"url":18,"identifiers":2360},"Maskaoui, K., Zhou, J. L., Hong, H. S., & Zhang, Z. L. (2002). Contamination by polycyclic aromatic hydrocarbons in the Jiulong River Estuary and Western Xiamen Sea, China. Environmental Pollution, 118, 109–122.",{"doi":2361},"10.1016\u002FS0269-7491(01)00208-1",{"id":18,"text":2363,"url":18,"identifiers":2364},"Massey, L. B., Haggard, B. E., Galloway, J. M., Loftin, K. A., Meyer, M. T., & Green, W. R. (2010). Antibiotic fate and transport in three effluent-dominated Ozark streams. Ecological Engineering, 36, 930–938.",{"doi":2365},"10.1016\u002Fj.ecoleng.2010.04.009",{"id":18,"text":2367,"url":18,"identifiers":2368},"McGroddy, S. E., Farrington, J. W., & Gschwend, P. M. (1996). Comparison of the in situ and desorption sediment–water partitioning of polycyclic aromatic hydrocarbons and polychlorinated biphenyls. Environmental Science Technology, 30, 172–177.",{"doi":2369},"10.1021\u002Fes950218z",{"id":18,"text":2371,"url":18,"identifiers":2372},"Moiwo, J. P., Yang, Y. H., Li, H. L., Han, S. M., & Yang, Y. M. (2010). Impact of water resource exploitation on the hydrology and water storage in Baiyangdian Lake. Hydrological Processes, 24, 3026–3039.",{"doi":2373},"10.1002\u002Fhyp.7716",{"id":18,"text":2375,"url":18,"identifiers":2376},"Monteiro, S. C., & Boxall, A. B. A. (2009). Factors affecting the degradation of pharmaceuticals in agricultural soils. Environmental Toxicology Chemistry, 28, 2546–2554.",{"doi":2377},"10.1897\u002F08-657.1",{"id":18,"text":2379,"url":18,"identifiers":2380},"Murata, A., Takada, H., Mutoh, K., Hosoda, H., Harada, A., & Nakada, N. (2011). Nationwide monitoring of selected antibiotics: Distribution and sources of sulfonamides, trimethoprim, and macrolides in Japanese rivers. Science of the Total Environment, 409, 5305–5312.",{"doi":2381},"10.1016\u002Fj.scitotenv.2011.09.014",{"id":18,"text":2383,"url":18,"identifiers":2384},"Pei, Y. S., Guo, W., Yang, Z. F., & Chen, H. (2011). Historical changes in polycyclic aromatic hydrocarbons (PAHs) input in Lake Baiyangdian related to regional socio-economic development. Journal of Hazardous Materials, 187, 441–449.",{"doi":2385},"10.1016\u002Fj.jhazmat.2011.01.052",{"id":18,"text":2387,"url":18,"identifiers":2388},"Tamtam, F., Mercier, F., Bot, B. L., Eurin, J., Dinh, Q. T., Clement, M., et al. (2008). Occurrence and fate of antibiotics in the Seine River in various hydrological conditions. Science of the Total Environment, 393, 84–95.",{"doi":2389},"10.1016\u002Fj.scitotenv.2007.12.009",{"id":18,"text":2391,"url":18,"identifiers":2392},"Ter Laak, T. L., Agbo, S. O., Barendregt, A., & Hermens, J. L. M. (2006). Freely dissolved concentrationsof PAHs in soil pore water: Measurements via solid-phase extraction and consequences for soil tests. Environmental Science and Technology, 40, 1307–1313.",{"doi":2393},"10.1021\u002Fes0514803",{"id":18,"text":2395,"url":18,"identifiers":2396},"Ternes, A. T., Adriano, J., & Hansruedi, S. (2004). Peer reviewed: Scrutinizing pharmaceuticals and personal care products in wastewater treatment. Environmental Science & Technology, 38, 392–399.",{"doi":2397},"10.1021\u002Fes040639t",{"id":18,"text":2399,"url":18,"identifiers":2400},"Tolls, J. (2001). Sorption of veterinary pharmaceuticals in soils: A review. Environmental Science and Technology, 35, 3397–3406.",{"doi":2401},"10.1021\u002Fes0003021",{"id":18,"text":2403,"url":18,"identifiers":2404},"Vulliet, E., Cren-Olivé, C., & Grenier-Loustalot, M. F. (2011). Occurrence of pharmaceuticals and hormones in drinking water treated from surface waters. Environmental Chemistry Letters, 9, 103–114.",{"doi":2405},"10.1007\u002Fs10311-009-0253-7",{"id":18,"text":2407,"url":18,"identifiers":2408},"Wu, C. X., Huang, X. L., Witter, J. D., & Spongberg, A. L. (2014). Occurrence of pharmaceuticals and personal care products and associated environmental risks in the central and lower Yangtze river, China. Ecotoxicology and Environmental Safety, 106, 19–26.",{"doi":2409},"10.1016\u002Fj.ecoenv.2014.04.029",{"id":18,"text":2411,"url":18,"identifiers":2412},"Wu, C. X., Witter, J. D., Spongberg, A. L., & Czajkowski, K. P. (2009). Occurrence of selected pharmaceuticals in an agricultural landscape, western Lake Erie basin. Water Research, 43, 3407–3416.",{"doi":2413},"10.1016\u002Fj.watres.2009.05.014",{"id":18,"text":2415,"url":18,"identifiers":2416},"Xu, J., Wu, L., & Chang, A. C. (2009). Degradation and adsorption of selected pharmaceuticals and personal care products (PPCPs) in agricultural soils. Chemosphere, 77, 1299–1305.",{"doi":2417},"10.1016\u002Fj.chemosphere.2009.09.063",{"id":18,"text":2419,"url":18,"identifiers":2420},"Xu, J., Zhang, Y., Zhou, C. B., Guo, C. S., Wang, D. M., Du, P., et al. (2014). Distribution, sources and composition of antibiotics in sediment, overlying water and pore water from Taihu Lake, China. Science of the Total Environment, 497–498, 267–273.",{"doi":2421},"10.1016\u002Fj.scitotenv.2014.07.114",{"id":18,"text":2423,"url":18,"identifiers":2424},"Xu, W. H., Zhang, G., Zou, S. C., Li, X. D., & Liu, Y. C. (2007). Determination of selected antibiotics in the Victoria Harbour and the Pearl River, South China using high-performance liquid chromatography-electrospray ionization tandem mass spectrometry. Environmental Pollution, 145, 672–679.",{"doi":2425},"10.1016\u002Fj.envpol.2006.05.038",{"id":18,"text":2427,"url":18,"identifiers":2428},"Yan, C. X., Yang, Y., Zhou, J. L., Liu, M., Nie, M. H., Shi, H., et al. (2013). Antibiotics in the surface water of the Yangtze Estuary: Occurrence, distribution and risk assessment. Environmental Pollution, 175, 22–29.",{"doi":2429},"10.1016\u002Fj.envpol.2012.12.008",{"id":18,"text":2431,"url":18,"identifiers":2432},"Yang, Y. Y., Cao, X. H., Zhang, M. M., & Wang, J. (2015). Occurrence and distribution of endocrine-disrupting compounds in the Honghu Lake and East Dongting Lake along the Central Yangtze River, China. Environmental Science and Pollution Research, 22, 17644–17652.",{"doi":2433},"10.1007\u002Fs11356-015-4980-y",{"id":18,"text":2435,"url":18,"identifiers":2436},"Yang, X., Chen, F., Meng, F. G., Xie, Y. Y., Chen, H., Young, K., et al. (2013). Occurrence and fate of PPCPs and correlations with water quality parameters in urban riverine waters of the Pearl River Delta, South China. Environmental Science and Pollution Research, 20, 5864–5875.",{"doi":2437},"10.1007\u002Fs11356-013-1641-x",{"id":18,"text":2439,"url":18,"identifiers":2440},"Yu, Y., Xu, J., Wang, P., Sun, H. W., & Dai, S. G. (2009). Sediment–porewater partition of polycyclic aromatic hydrocarbons (PAHs) from Lanzhou Reach of Yellow River, China. Journal of Hazardous Materials, 165, 494–500.",{"doi":2441},"10.1016\u002Fj.jhazmat.2008.10.042",{"id":18,"text":2443,"url":18,"identifiers":2444},"Zhang, H. M., Liu, P. X., Feng, Y. J., & Yang, F. L. (2013a). Fate of antibiotics during wastewater treatment and antibiotic distribution in the effluent-receiving waters of the Yellow Sea, north China. Marine Pollution Bulletin, 73, 282–290.",{"doi":2445},"10.1016\u002Fj.marpolbul.2013.05.007",{"id":18,"text":2447,"url":18,"identifiers":2448},"Zhang, R. J., Tang, J. H., Li, J., Zheng, Q., Liu, D., Chen, Y. J., et al. (2013b). Antibiotics in the offshore waters of the Bohai Sea and the Yellow Sea in China: Occurrence, distribution and ecological risks. Environmental Pollution, 174, 71–77.",{"doi":2449},"10.1016\u002Fj.envpol.2012.11.008",{"id":18,"text":2451,"url":18,"identifiers":2452},"Zhang, R. J., Zhang, G., Tang, J. H., Xu, W. H., Li, J., Liu, X., et al. (2012). Levels, spatial distribution and sources of selected antibiotics in the East River (Dongjiang), South China. Aquatic Ecosystem Health & Management, 15, 210–218.",{"doi":2453},"10.1080\u002F14634988.2012.689576",{"id":18,"text":2455,"url":18,"identifiers":2456},"Zhou, L. J., Ying, G. G., Zhao, J. L., Yang, J. F., Wang, L., Yang, B., et al. (2011). Trends in the occurrence of human and veterinary antibiotics in the sediments of the Yellow River, Hai River and Liao River in northern China. Environmental Pollution, 159, 1877–1885.",{"doi":2457},"10.1016\u002Fj.envpol.2011.03.034",{"id":18,"text":2459,"url":18,"identifiers":2460},"Zhuang, C. W., Ouyang, Z. Y., Xu, W. H., Bai, Y., Zhou, W. Q., Zheng, H., et al. (2011). Impacts of human activities on the hydrology of Baiyangdian Lake, China. Environmental Earth Sciences, 62, 1343–1350.",{"doi":2461},"10.1007\u002Fs12665-010-0620-5",{"id":18,"text":2463,"url":18,"identifiers":2464},"Zou, S. C., Xu, W. H., Zhang, R. J., Tang, J. H., Chen, Y. J., & Zhang, G. (2011). Occurrence and distribution of antibiotics in coastal water of the Bohai Bay, China: Impacts of river discharge and aquaculture activities. 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Summary table, Updated December 2003.",{},{"id":18,"text":2718,"url":18,"identifiers":2719},"Companhia de Tecnologia de Saneamento Ambiental. (2005). DECISÃO DE DIRETORIA No 195-2005-E. Sao Paulo: CETESB.",{},{"id":18,"text":2721,"url":18,"identifiers":2722},"Cordova, S., Neaman, A., Gonzalez, I., Ginocchio, R., & Fine, P. (2011). The effect of lime and compost amendments on the potential for the revegetation of metal-polluted, acidic soils. Geoderma, 166(1), 135–144.",{"doi":2723},"10.1016\u002Fj.geoderma.2011.07.022",{"id":18,"text":2725,"url":18,"identifiers":2726},"Department of Economic and Social Affairs United. (2014). World urbanization prospects, the 2014 revision: Highlights. New York: United Nations.",{},{"id":18,"text":2728,"url":18,"identifiers":2729},"Glennon, M. M., Harris, P., Ottesen, R. T., Scanlon, R. P., & O’Connor, P. J. (2014). The Dublin SURGE Project: Geochemical baseline for heavy metals in topsoils and spatial correlation with historical industry in Dublin, Ireland. Environmental Geochemistry and Health, 36, 235–254.",{"doi":2730},"10.1007\u002Fs10653-013-9561-8",{"id":18,"text":2732,"url":18,"identifiers":2733},"Gomez-Alvarez, A., Valenzuela-Garcia, J. L., Meza-Figueroa, D., de la O-Villanueva, M., Ramirez-Hernandez, J., Almendariz-Tapia, J., et al. (2011). Impact of mining activities on sediments in a semi-arid environment: San Pedro River, Sonora, Mexico. Applied Geochemistry, 26(12), 2101–2112.",{"doi":2734},"10.1016\u002Fj.apgeochem.2011.07.008",{"id":18,"text":2736,"url":18,"identifiers":2737},"Imperato, M., Adamo, P., Naimo, D., Arienzo, M., Stanzione, D., & Violante, P. (2003). Spatial distribution of heavy metals in urban soils of Naples city (Italy). 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Applied Geochemistry, 21, 1613–1624.",{"doi":2750},"10.1016\u002Fj.apgeochem.2006.05.005",{"id":18,"text":2752,"url":18,"identifiers":2753},"Manta, D. S., Angelone, M., Bellanca, A., Neri, R., & Sprovieri, M. (2002). Heavy metals in urban soils: A case of Palermo (Sicily), Italy. The Science of the Total Environment, 300, 229–243.",{"doi":2754},"10.1016\u002FS0048-9697(02)00273-5",{"id":18,"text":2756,"url":18,"identifiers":2757},"Massas, I., Ehaliostis, C., Kalivas, D., & Panagopoulou, G. (2010). Concentrations and availability indicators of soil heavy metals; the case of children playgrounds in the city of Athens (Greece). Water, Air, and Soil pollution, 212, 51–63.",{"doi":2758},"10.1007\u002Fs11270-009-0321-4",{"id":18,"text":2760,"url":18,"identifiers":2761},"McKay, C. P. (2002). Two dry for life: The Atacama Desert and Mars. Ad Astra, NASA Ames Research Center. http:\u002F\u002Fspacewardbound.nasa.gov\u002Fdocs\u002FMcKay2002AtacamaAdAstra1.pdf .",{},{"id":18,"text":2763,"url":18,"identifiers":2764},"Mielke, H. W., Gonzales, C. R., Smith, M. K., & Mielke, P. W. (1999). The urban environment and children’s health: Soils as an integrator of lead, zinc, and cadmium in New Orleans, Louisiana, U.S.A. Environmental Research (Section A), 81, 117–129.",{"doi":2765},"10.1006\u002Fenrs.1999.3966",{"id":18,"text":2767,"url":18,"identifiers":2768},"Mielke, H. W., & Reagan, P. L. (1998). Soil is an important pathway of human lead exposure. Environmental Health Perspectives, 106(Suppl. 1), 217–229.",{"doi":2769},"10.1289\u002Fehp.98106s1217",{"id":18,"text":2771,"url":18,"identifiers":2772},"Moller, A., Muller, H. W., Abdullah, A., Abdelgawad, G., & Utermann, J. (2005). Urban soil pollution in Damaskus, Syria: Concentrations and patterns of heavy metals in the soils of the Damascus Ghouta. 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Applied Geochemistry, 21, 2064–2081.",{"doi":2783},"10.1016\u002Fj.apgeochem.2006.06.014",{"id":18,"text":2785,"url":18,"identifiers":2786},"Pansu, M., & Gautheyrou, J. (2006). Handbook of soil analysis. Mineralogical, organic and inorganic methods. Berlin: Springer.",{"doi":2787},"10.1007\u002F978-3-540-31211-6",{"id":18,"text":2789,"url":18,"identifiers":2790},"Park, J. H., Hodge, V., Gerstenberger, S., & Stave, K. (2014). Mobilization of toxic elements from an abandoned manganese mine in the arid metropolitan Las Vegas (NV, USA) area. Applied Sciences (Basel), 4(2), 240–254.",{"doi":2791},"10.3390\u002Fapp4020240",{"id":18,"text":2793,"url":18,"identifiers":2794},"Sackett, D., & Martin, K. (1998). EPA method 6200 and field portable X-ray fluorescence. Bedford, MA: US EPA.",{},{"id":18,"text":2796,"url":18,"identifiers":2797},"Sánchez-Martin, M. J., Sánchez-Camazano, M., & Lorenzo, L. F. (2000). Cadmium and lead contents in suburban and urban soils from two medium-sized cities in Spain: Influence of traffic intensity. Bulletin of Environment Contamination and Toxicology, 64, 250–257.",{"doi":2798},"10.1007\u002Fs001289910037",{"id":18,"text":2800,"url":18,"identifiers":2801},"SEREMI MINSAL [Secretaría Regional Ministerio de Salud]. (2011). Reporte anual actividades 2011. Plan de Salud de polimetales SEREMI de salud de Arica y Parinacota, Chile.",{},{"id":18,"text":2803,"url":18,"identifiers":2804},"SERNAGEOMIN. (2015). Catastro nacional de depósitos de relave, depósitos activos y no activos 2015. Gobierno de Chile: Departamento de depósito de relaves, Servicio Nacional de Geología y Minería.",{},{"id":18,"text":2806,"url":18,"identifiers":2807},"Sobrino-Figueroa, A. S., Becerra-Rueda, O. F., Magallanes-Ordonez, V. R., Sanchez-Gonzalez, A., & Marmolejo-Rodriguez, A. J. (2015). Toxicity in semiarid sediments influenced by tailings of an abandoned gold mine. Environmental Monitoring and Assessment, 187(1), 1–8.",{"doi":2808},"10.1007\u002Fs10661-014-4158-y",{"id":18,"text":2810,"url":18,"identifiers":2811},"Soublette, N., Heyer, J., & Cortés, I. (2011). INFORME FINAL. Investigación preliminar y confirmatoria de suelos con potencial presencia de contaminantes (SPPC). Comunas de Copiapó y Tierra Amarilla, Chile. 580 pp.",{},{"id":18,"text":2813,"url":18,"identifiers":2814},"US EPA. (2002). Calculating upper confidence limits for exposure point concentrations at hazardous waste sites. Washington, DC: Office of Emergency and Remedial Response, United States Environmental Protection Agency.",{},{"id":18,"text":2816,"url":18,"identifiers":2817},"US EPA. (2015). Regional screening level (RSL) summary table. Risk assessment, United States Environmental Protection Agency.",{},{"id":18,"text":2819,"url":18,"identifiers":2820},"Varrica, D., Tamburo, E., Milia, N., Vallascas, E., Cortimiglia, V., De Giudici, G., et al. (2014). 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Assessed March 16, 2017.",{},{"id":18,"text":3062,"url":18,"identifiers":3063},"ATSDR. (2007). Toxicological profile for lead. Agency for Toxic Substances and Disease Registry. https:\u002F\u002Fwww.atsdr.cdc.gov\u002Ftoxprofiles\u002Ftp13.pdf. Assessed March 16, 2017.",{},{"id":18,"text":3065,"url":18,"identifiers":3066},"ATSDR. (2012). Toxicological profile for cadmium. Agency for Toxic Substances and Disease Registry. https:\u002F\u002Fwww.atsdr.cdc.gov\u002Ftoxprofiles\u002Ftp5.pdf. Assessed March 16, 2017.",{},{"id":18,"text":3068,"url":18,"identifiers":3069},"Bekaert, C., Rast, C., Ferrier, V., Bispo, A., Jourdain, M. J., & Vasseur, P. (1999). Use of in vitro (Ames and Mutatox tests) assays to assess the genotoxicity of leachates from contaminated soil. Organic Geochemistry, 30, 953–962.",{"doi":3070},"10.1016\u002FS0146-6380(99)00079-0",{"id":18,"text":3072,"url":18,"identifiers":3073},"Beyersmann, D., & Hartwig, A. (2008). 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Journal of Life Sciences, 8(5), 461–472.",{},{"id":18,"text":3129,"url":18,"identifiers":3130},"Eja, C. E., Ogri, O. R., & Arikpo, G. E. (2003). Bioconcentration of heavy metals in surface sediments from the Great Kwa river estuary, Calabar, Southeast Nigeria. Nigerian Journal of Environmental Sociology, 2, 247–256.",{},{"id":18,"text":3132,"url":18,"identifiers":3133},"Facchinelli, A., Sacchi, E., & Mallen, L. (2001). Multivariate statistical and GIS-based approach to identify heavy metal sources in soils. Environmental Pollution, 114, 313–324.",{"doi":3134},"10.1016\u002FS0269-7491(00)00243-8",{"id":18,"text":3136,"url":18,"identifiers":3137},"Fernandez-Luqueno, F., Lopez-Valdez, F., Gamero-Melo, P., Suarez, S. L., Aguilera-Gonzalez, E. N., Martinez, A. I., et al. (2013). Heavy metal pollution in drinking water—A global risk for human health: A review. African Journal of Environmental Science and Technology, 7(7), 567–584.",{},{"id":18,"text":3139,"url":18,"identifiers":3140},"Giridharan, L., Venugopal, T., & Jayaprakash, M. (2008). Evaluation of seasonal variation on the geochemical parameters and quality assessment of the groundwater in the proximity of River Cooum, Chennai, India. Environmental Monitoring and Assessment, 143(1–3), 161–178.",{"doi":3141},"10.1007\u002Fs10661-007-9965-y",{"id":18,"text":3143,"url":18,"identifiers":3144},"Gu, Y.-G., Gao, Y.-P., & Lin, Q. (2016). Contamination, bioaccessibility and human health risk of heavy metals in exposed-lawn soils from 28 urban parks in southern China’s largest city, Guangzhou. Applied Geochemistry. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.apgeochem.2016.02.004.",{"doi":3145},"10.1016\u002Fj.apgeochem.2016.02.004",{"id":18,"text":739,"url":18,"identifiers":3147},{"doi":741},{"id":18,"text":3149,"url":18,"identifiers":3150},"Huang, G. X., Sun, J. C., Jing, J. H., Wang, S., Du, H. Y., Liu, J. T., et al. (2008). Distribution and origin of iron in groundwater of Zhujiang delta. Geology in China, 35, 531–538.",{"doi":3151},"10.1130\u002FG23666A.1",{"id":18,"text":3153,"url":18,"identifiers":3154},"IARC. (1993a). IARC cancer databases. World Health Organization. http:\u002F\u002Fwww.iarc.fr. Accessed October 14, 2016.",{},{"id":18,"text":3156,"url":18,"identifiers":3157},"IARC. (1993b). IARC Monographs on the Evaluation of Carcinogenic Risk to Humans. Volume 58. Beryllium, cadmium, mercury and exposures in the glass manufacturing industry. World Health Organization. http:\u002F\u002Fwww.iarc.fr. Accessed April 13, 2017.",{},{"id":18,"text":3159,"url":18,"identifiers":3160},"IARC. (2006). IARC Monographs on the Evaluation of Carcinogenic Risk to Humans. Volume 87. Inorganic and Organic Lead Compounds. World Health Organization. http:\u002F\u002Fwww.iarc.fr. Accessed April 13, 2017.",{},{"id":18,"text":3162,"url":18,"identifiers":3163},"IARC. (2012). Arsenic, metals, fibers, and dust. Volume 100 C. A review of human carcinogens. World Health Organization. http:\u002F\u002Fwww.iarc.fr. Accessed April 13, 2017.",{},{"id":18,"text":3165,"url":18,"identifiers":3166},"IARC. (2017). IARC monographs on the evaluation of carcinogenic risk to humans. Agents classified by the IARC Monograps (Vols. 1–120). World Health Organization. http:\u002F\u002Fmonographs.iarc.fr\u002FENG\u002FClassification\u002F. Accessed Dec 4, 2017.",{},{"id":18,"text":3168,"url":18,"identifiers":3169},"Iqbal, H., Taseer, R., Anwar, S., Qadir, A., & Shahid, N. (2016). Human health risk assessment: Heavy metal contamination of vegetables in Bahawalpur, Pakistan. Bulletin of Environmental Studies, 1(1), 10–17.",{},{"id":18,"text":3171,"url":18,"identifiers":3172},"Ishaque, A. B., Johnson, L., Gerald, T., Boucaud, D., Okoh, J., & Tchounwou, P. B. (2006). Assessment of individual and combined toxicities of four non-essential metals (As, Cd, Hg and Pb) in the microtox assay. International Journal of Environmental Research and Public Health, 3(1), 118–120.",{"doi":3173},"10.3390\u002Fijerph2006030014",{"id":18,"text":3175,"url":18,"identifiers":3176},"ISO 10381-5. (2005). Soil quality-sampling. Part 5: Guidance on the procedure for the investigation of urban and industrial sites with regard to soil contamination. Geneva: International Organization for Standardization.",{},{"id":18,"text":3178,"url":18,"identifiers":3179},"ISO 10381-6. (2009). Soil quality—Sampling. Part 6: Guidance on the collection, handling and storage of soil under aerobic conditions for the assessment of microbiological processes, biomass and diversity in the laboratory. Geneva: International Organization for Standardization.",{},{"id":18,"text":3181,"url":18,"identifiers":3182},"ISO 11464. (2006). Soil quality—Pretreatment of samples for physico-chemical analysis. Geneva: International Organization for Standardization.",{},{"id":18,"text":3184,"url":18,"identifiers":3185},"Jadhav, A. L., Ramesh, G. T., & Gunasekar, P. G. (2000). Contribution of protein kinase C and glutamate in Pb2+-induced cytotoxicity. Toxicology Letters, 115, 89–98.",{"doi":3186},"10.1016\u002FS0378-4274(00)00177-6",{"id":18,"text":3188,"url":18,"identifiers":3189},"Jarup, L. (2003). Hazards of heavy metal contamination. British Medical Bulletin, 68, 167–182.",{"doi":3190},"10.1093\u002Fbmb\u002Fldg032",{"id":18,"text":3192,"url":18,"identifiers":3193},"Kabata-Pendias, A., & Pendias, H. (2001). Trace elements in soils and plants. Florida: CRC Press LLC.",{},{"id":18,"text":3195,"url":18,"identifiers":3196},"Kahru, A., Ivask, A., Kasemets, K., PollumaaKurvet, I., Francois, M., & Dobourguier, H.-C. (2005). Biotests and biosensors in ecotoxicological risk assessment of fields soils polluted with zinc, lead and cadmium. Environmental Toxicology and Chemistry, 24, 2973–2982.",{"doi":3197},"10.1897\u002F05-002R1.1",{"id":18,"text":3199,"url":18,"identifiers":3200},"Katnoria, J. K., Arora, S., Bhardwaj, R., & Nagpal, A. (2011). Evaluation of genotoxic potential of industrial waste contaminated soil extracts of Amritsar, India. Journal of Environmental Biology, 32, 363–367.",{},{"id":18,"text":3202,"url":18,"identifiers":3203},"Kede, M. L. F. M., Correia, F. V., Conceicao, P. F., Salles Junior, S. F., Marques, M., Moreira, J. C., et al. (2014). Evaluation of mobility, bioavailability and toxicity of Pb and Cd in contaminated soil using TCLP, BCR and earthworms. International Journal of Environmental Research and Public Health, 11(11), 11528–11540.",{"doi":3204},"10.3390\u002Fijerph111111528",{"id":18,"text":3206,"url":18,"identifiers":3207},"Khan, A., Khan, S., Khan, M. A., Qamar, Z., & Waqas, M. (2015). The uptake and bioaccumulations of heavy metals by food plants, their effects on plant nutrients, and associated health risk: A review. Environmental Science and Pollution Research, 22, 13772–13799.",{"doi":3208},"10.1007\u002Fs11356-015-4881-0",{"id":18,"text":3210,"url":18,"identifiers":3211},"Knasmuller, S., Gottmann, E., Steinkellner, H., Fomin, A., Pickl, C., Paschke, A., et al. (1998). Detection of genotoxic effects of heavy metal contaminated soil with plant bioassays. Mutation Research, 420, 37–48.",{"doi":3212},"10.1016\u002FS1383-5718(98)00145-4",{"id":18,"text":3214,"url":18,"identifiers":3215},"Lah, B., Avbersek, M., Gorjanc, G., & MarinsekLogar, R. (2005). Toxic and genotoxic potential evaluation of soil samples by bioassays. Actaagriculturae Slovenica, 86(1), 27–38.",{},{"id":18,"text":3217,"url":18,"identifiers":3218},"Lah, B., Vidic, T., Glasencnik, E., Cepeljnik, T., Gorjanc, G., & Marinsek-Logar, R. (2008). Genotoxicity evaluation of water soil leachates by Ames test, comet assay, and preliminary Tradescantia micronucleus assay. Environmental Monitoring and Assessment, 139, 107–118.",{"doi":3219},"10.1007\u002Fs10661-007-9819-7",{"id":18,"text":3221,"url":18,"identifiers":3222},"Law of Agricultural Land. (2009). Official Gazette F BiH 52\u002F09. http:\u002F\u002Fwww.fbihvlada.gov.ba\u002Fbosanski\u002Fzakoni\u002F2009\u002Fzakoni\u002F32bos.htm. Accessed March 13, 2017.",{},{"id":18,"text":3224,"url":18,"identifiers":3225},"Lee, C. S., Li, X. D., Shi, W. Z., Cheung, S. C., & Thornton, I. (2006). Metal contamination in urban, suburban, and country park soils of Hong Kong: A study based on GIS and multivariate statistics. Science of the Total Environment, 365, 45–61.",{},{"id":18,"text":3227,"url":18,"identifiers":3228},"Li, X. D., Lee, S. L., Wong, S. C., Shi, W. Z., & Thornton, I. (2004). The study of metal contamination in urban soils of Hong Kong using GIS-based approach. Environmental Pollution, 129, 113–124.",{"doi":2746},{"id":18,"text":3230,"url":18,"identifiers":3231},"Likuku, A. S., Mmolawa, K. B., & Gaboutloeloe, G. K. (2013). Assessment of heavy metal enrichment and degree of contamination around the copper-nickel mine in the Selebi Phikwe Region, Eastern Botswana. Environment and Ecology Research, 1(2), 32–40.",{"doi":3232},"10.13189\u002Feer.2013.010202",{"id":18,"text":3234,"url":18,"identifiers":3235},"Liu, G., Wang, J., Zhang, E., Hou, J., & Liu, X. (2016). Heavy metal speciation and risk assessment in dry land and paddy soils near mining areas at Southern China. Environmental Science and Pollution Research, 23(9), 8709–8720.",{"doi":3236},"10.1007\u002Fs11356-016-6114-6",{"id":18,"text":3238,"url":18,"identifiers":3239},"Manta, D. S., Angelone, M., Bellance, A., Neriand, R., & Sprovieri, M. (2002). Heavy metals in urban soils: A case study from the city of Palermo (Sicily), Italy. Science of the Total Environment, 30, 229–243.",{"doi":2754},{"id":18,"text":3241,"url":18,"identifiers":3242},"Matovic, V., Buha, A., Dukic-Cosic, D., & Bulat, Z. (2015). Insight into oxidative stress induced by lead and\u002For cadmium in blood, liver and kidneys. Food and Chemical Toxicology, 78, 130–140. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.fct.2015.02.011.",{"doi":3243},"10.1016\u002Fj.fct.2015.02.011",{"id":18,"text":3245,"url":18,"identifiers":3246},"Mehrabi, B., Mehrabani, S., Rafiei, B., & Yaghoubi, B. (2015). Assessment of metal contamination in groundwater and soils in the Ahangaran mining district, west of Iran. Environmental Monitoring and Assessment, 187, 727.",{"doi":3247},"10.1007\u002Fs10661-015-4864-0",{"id":18,"text":3249,"url":18,"identifiers":3250},"Mmolawa, K. B., Likuku, A. S., & Gaboutloeloe, G. K. (2011). Assessment of heavy metal pollution in soils along major roadside areas in Botswana. African Journal of Environmental Science and Technology, 5(3), 186–196.",{},{"id":18,"text":3252,"url":18,"identifiers":3253},"Moucher, F., Gauthier, L., Mailhes, C., Jourdain, M. J., Ferrier, V., Triffault, G., et al. (2006). Biomonitoring of the genotoxic potential of aqueous extracts of soils and bottom ash resulting from municipal solid waste incineration using the comet and micronucleus tests on amphibian (Xenopuslaevis) larvae and bacterial assays (Mutatox and Ames tests). Science of the Total Environment, 335, 232–246.",{"doi":3254},"10.1016\u002Fj.scitotenv.2005.02.031",{"id":18,"text":3256,"url":18,"identifiers":3257},"Muller, G. (1969). Index of geo-accumulation in sediments of the Rhine River. Geo Journal, 2(3), 108–118.",{},{"id":18,"text":3259,"url":18,"identifiers":3260},"Olivieri, G., Brack, Ch., Müller-Spahn, F., Stähelin, H. B., Herrmann, M., & Renard, P. (2000). Mercury induces cell cytotoxicity and oxidative stress and increases β-amyloid secretion and tau phosphorylation in SHSY5Y neuroblastoma cells. Journal of Neurochemistry, 74(1), 231–236.",{"doi":3261},"10.1046\u002Fj.1471-4159.2000.0740231.x",{"id":18,"text":3263,"url":18,"identifiers":3264},"Ordinance on Identification of the Allowable Amounts of Harmful and Hazardous Substances in Soil and Methods of their Examination. (2009). Official Gazette F BiH 72\u002F09. http:\u002F\u002Fwww.uip-zzh.com\u002Ffiles\u002Fzakoni\u002Fpoljoprivreda\u002F72-09.pdf. Accessed February 24, 2017.",{},{"id":18,"text":3266,"url":18,"identifiers":3267},"Osmanovic, S., Huseinovic, S., & Goletic, S. (2015). Assessment of heavy metals in vegetables grown in the Tuzla area. In Proceedings of the 9th scientific conference with international participation Quality 2015 (pp. 469–473).",{},{"id":18,"text":3269,"url":18,"identifiers":3270},"Pasalic, A., Bikic, F., & Goletic, S. (2015). The influence of soil pH and the addition of chelating agents on the lead content in certain plants. In Proceedings of the 9th scientific conference with international participation Quality 2015 (pp. 493–497).",{},{"id":18,"text":3272,"url":18,"identifiers":3273},"Product Information Sheet. (2010). PrestoBlue Viability Reagent Protocol. https:\u002F\u002Ftools.thermofisher.com\u002Fcontent\u002Fsfs\u002Fmanuals\u002FPrestoBlue_Reagent_PIS_15Oct10.Pdf. Accessed September 29, 2016.",{},{"id":18,"text":3275,"url":18,"identifiers":3276},"Robinson, J. P., Sturgis, J., & Kumar, L. G. (2009). Immunohistochemical staining methods (5th ed.). California: Dako.",{},{"id":18,"text":3278,"url":18,"identifiers":3279},"Silins, I., & Högberg, J. (2011). Combined toxic exposures and human health: Biomarkers of exposure and Effect. International Journal of Environmental Research and Public Health, 8(3), 629–647.",{"doi":3280},"10.3390\u002Fijerph8030629",{"id":18,"text":3282,"url":18,"identifiers":3283},"Steffensen, I.-L., Mesna, O. J., Andruchow, E., Namork, E., Hylland, K., & Andersen, R. A. (1994). Cytotoxicity and accumulation of Hg, Ag, Cd, Cu, Pb and Zn in human peripheral T and B lymphocytes and monocytes in vitro. General Pharmacology, 25(8), 1621–1633.",{"doi":3284},"10.1016\u002F0306-3623(94)90364-6",{"id":18,"text":3286,"url":18,"identifiers":3287},"Sun, Y., Zhou, Q., Xie, X., & Liu, R. (2010). Spatial, sources and risk assessment of heavy metal contamination of urban soils in typical regions of Shenyang, China. Journal of Hazardous Materials, 174, 455–462.",{"doi":3288},"10.1016\u002Fj.jhazmat.2009.09.074",{"id":18,"text":3290,"url":18,"identifiers":3291},"Tanaka, T., Halicka, D., Traganos, F., & Darzynkiewicz, Z. (2009). Cytometric analysis of DNA damage: phosphorylation of histone H2AX as a marker of DNA double-strand breaks (DSBs). Methods in Molecular Biology, 523, 161–168.",{"doi":3292},"10.1007\u002F978-1-59745-190-1_11",{"id":18,"text":3294,"url":18,"identifiers":3295},"Tchounwou, P. B., Yedjou, C. G., Foxx, D. N., Isnaque, A. B., & Snen, E. (2004). Lead-induced cytotoxicity and transcriptional activation of sress genes in human liver carcinoma (HepG2) cells. Molecular and Cellular Biochemistry, 225, 161–170.",{"doi":3296},"10.1023\u002FB:MCBI.0000007272.46923.12",{"id":18,"text":3298,"url":18,"identifiers":3299},"Tchounwou, P. B., Yedjou, C. G., Patlolla, A. K., & Sutton, D. J. (2012). Heavy metal toxicity and the environment. Molecular, Clinical and Environmental Toxicology, 101, 133–164.",{"doi":3300},"10.1007\u002F978-3-7643-8340-4_6",{"id":18,"text":3302,"url":18,"identifiers":3303},"Tiwari, A. K., Singh, P. K., Singh, A. K., & De Maio, M. (2016). Estimation of heavy metal contamination in groundwater and development of heavy metal pollution index by using GIS technique. Bulletin of Environmental Contamination and Toxicology, 96, 508–515.",{"doi":3304},"10.1007\u002Fs00128-016-1750-6",{"id":18,"text":3306,"url":18,"identifiers":3307},"Tomlinson, D. C., Wilson, D. J., Harris, C. R., & Jeffrey, D. W. (1980). Problem in assessment of heavy metals in Estuaries and the Formation of Pollution Index. HergolandWiss Meeresuniter, 33(1–4), 566–575.",{"doi":3308},"10.1007\u002FBF02414780",{"id":18,"text":3310,"url":18,"identifiers":3311},"Trabelsi, F., Khlifi, R., Gouw, D., Guillamin, M., Hamya-Chaffai, A., & Sichel, F. (2016). Genotoxic effects of cadmium in human head and neck cell line SQ20B. Environmental Science and Pollution Research, 23, 16127–16136.",{"doi":3312},"10.1007\u002Fs11356-016-6772-4",{"id":18,"text":3314,"url":18,"identifiers":3315},"Tsuzuki, K., Sugiyama, M., & Haramaki, N. (1994). DNA single-strand breaks and cytotoxicity induced by chromate(VI), cadmium(II), and mercury(II) in hydrogen peroxide-resistant cell lines. Environmental Health Perspectives, 102(3), 341–342.",{"doi":3316},"10.1289\u002Fehp.94102s3341",{"id":18,"text":3318,"url":18,"identifiers":3319},"Tunjic, J., Cipurkovic, A., & Selimbasic, V. (2015). Evaluation of possible applications of soil for agricultural purposes in terms of heavy metals and proximity to industrial facilities. In Proceedings of the third international scientific-expert symposium agricultural production and environmental protection in the development of rural areas (pp. 224–237).",{},{"id":18,"text":3321,"url":18,"identifiers":3322},"U.S. EPA. (2000a). Cadmium compounds. U.S Environmental Protection Agency. https:\u002F\u002Fwww.epa.gov\u002Fsites\u002Fproduction\u002Ffiles\u002F2016-09\u002Fdocuments\u002Fcadmium-compounds.pdf. Assessed March 16, 2017.",{},{"id":18,"text":3324,"url":18,"identifiers":3325},"U.S. EPA. (2011). Lead compounds. U.S Environmental Protection Agency. https:\u002F\u002Fwww.epa.gov\u002Fsites\u002Fproduction\u002Ffiles\u002F2016-09\u002Fdocuments\u002Flead-compounds.pdf. Assessed March 16, 2017.",{},{"id":18,"text":3327,"url":18,"identifiers":3328},"U.S. EPA. (2000b). Mercury compounds. U.S Environmental Protection Agency. https:\u002F\u002Fwww.epa.gov\u002Fsites\u002Fproduction\u002Ffiles\u002F2016-09\u002Fdocuments\u002Fmercury-compounds.pdf. Assessed March 16, 2017.",{},{"id":18,"text":3330,"url":18,"identifiers":3331},"Unyayar, S., Celik, A., Cekic, F. Ö., & Gozel, A. (2006). Cadmium-induced genotoxicity, cytotoxicity and lipid peroxidation in Allium sativum and Viciafaba. Mutagenesis, 21(1), 77–81.",{"doi":3332},"10.1093\u002Fmutage\u002Fgel001",{"id":18,"text":3334,"url":18,"identifiers":3335},"Venugopal, T., Giridharan, L., Jayaprakash, M., & Periakali, P. (2009). Environmental impact assessment and seasonal variation study of the groundwater in the vicinity of River Adyar, Chennai, India. Environmental Monitoring and Assessment, 149(1–4), 81–97.",{"doi":3336},"10.1007\u002Fs10661-008-0185-x",{"id":18,"text":3338,"url":18,"identifiers":3339},"Vidic, T., Lah, B., Berden-Zrimec, M., & Marinsek-Logar, R. (2009). Bioassays for evaluating the water-extractable genotoxic and toxic potential of soils polluted by metal smelters. Environmental Toxicology, 24(5), 472–483.",{"doi":3340},"10.1002\u002Ftox.20451",{"id":18,"text":3342,"url":18,"identifiers":3343},"Villatoro-Pullido, M., Font, R., De Haro-Bravo, M. I., Romereo-Jimenez, M., Anter, J., Bailon, A. D. H., et al. (2009). Modulation of genotoxicity and cytotoxicity by radish grown in metal-contaminated soils. Mutagenesis, 24(1), 51–57.",{"doi":3344},"10.1093\u002Fmutage\u002Fgen051",{"id":18,"text":3346,"url":18,"identifiers":3347},"Watanabe, T., & Hirayama, T. (2001). Genotoxicity of soil. Journal of Health Science, 47(5), 433–438.",{"doi":3348},"10.1248\u002Fjhs.47.433",{"id":18,"text":3350,"url":18,"identifiers":3351},"Wedepohl, H. (1995). The composition of the continental crust. Geochimica and Cosmochimica Acta, 59, 1217–1239.",{"doi":3352},"10.1016\u002F0016-7037(95)00038-2",{"id":18,"text":3354,"url":18,"identifiers":3355},"White, P. A., & Claxton, L. D. (2004). Mutagens in contaminated soil: A review. Mutation Research, 576, 227–345.",{"doi":3356},"10.1016\u002Fj.mrrev.2004.09.003",{"id":18,"text":3358,"url":18,"identifiers":3359},"WHO. (2000). Environmental Health Criteria 214. Human Exposure Assessment. World Health Organization. http:\u002F\u002Fwww.chec.pitt.edu\u002Fdocuments\u002Fun-environ-prog.pdf. Accessed February 23, 2017.",{},{"id":18,"text":3361,"url":18,"identifiers":3362},"Yang, Z., Lu, W., Long, Y., Bao, X., & Yang, Q. (2011). Assessment of heavy metals contamination in urban topsoil from Changchun City, China. Journal of Geochemical Exploration, 108, 27–38.",{"doi":3363},"10.1016\u002Fj.gexplo.2010.09.006",{"id":18,"text":3365,"url":18,"identifiers":3366},"Zheng, S., Zheng, X., & Chen, C. (2012). Leaching behavior of heavy metals and transformation of their speciation in polluted soil receiving simulated acid rain. PLoS ONE, 7(11), e49664. https:\u002F\u002Fdoi.org\u002F10.1371\u002Fjournal.pone.0049664.",{"doi":3367},"10.1371\u002Fjournal.pone.0049664"]