Trace metal concentration in planted cucumber (Cucumis sativus L.) from contaminated soils and its associated health risks

Springer Science and Business Media LLC - Tập 15 Số 3 - Trang 205-217 - 2020
Hanaa S. Shehata1, Tarek M. Galal2
1Botany Department, Faculty of Science, Zagazig University, Zagazig, Egypt
2Botany and Microbiology Department, Faculty of Science, Helwan University, Cairo, Egypt

Tóm tắt

Từ khóa


Tài liệu tham khảo

Abdi O, Kazemi M (2015) A review study of biosorption of heavy metals and comparison between different biosorbents. Mater Environ Sci 6(5):1386–1399

Ackah M, Anim K, Gyamfi ET, Zakaria N, Hanson J, Tulasi D, Enti-Brown E, Saah-Nyarko S, Owusu Bentil N, Osei J (2014) Uptake of heavy metals by some edible vegetables irrigated using wastewater: a preliminary study in Accra, Ghana. Environ Monit Assess 186:621–634

Afolayan AO (2018) Accumulation of heavy metals from battery waste in topsoil, surface water, and garden grown maize at Omilende Area, Olodo, Nigeria. Glob Chall 2(1700090):1–12

Ali MHH, Al-Qahtani KM (2012) Assessment of some heavy metals in vegetables, cereals and fruits in Saudi Arabian markets, Egypt. J Aquat Res 38:31–37

Allen SE (1989) Chemical analysis of ecological materials, 2nd edn. Blackwell Scientific Publications, Oxford and London

Angulo E (1996) The Tomlinson Pollution Index applied to heavy metal, Mussel-Watch data: a useful index to assess coastal pollution. Sci Total Environ 187:19–56

Chandra R, Yadav S, Mohan D (2008) Effect of distillery sludge on seed germination and growth parameters of green gram (Phaseolus mungo L.). J Hazard Mater 152:431–439

Chaudri A, McGrath S, Gibbs P, Chambers B, Carlton-Smith C, Godley A, Bacon J, Campbell C, Aitken M (2007) Cadmium availability to wheat grain in soils treated with sewage sludge or metal salts. Chemosphere 66:1415–1423

Chauhan A, Joshi PC (2010) Effect of ambient air pollutants on wheat and mustard crops growing in the vicinity of urban and industrial areas. N Y Sci J 3(2):52–60

Chauhan G, Chauhan UK (2014) Risk assessment of heavy metal toxicity through contaminated vegetables from wastewater irrigated area of Rewa (M.P.), India. Int J Adv Technol Eng Sci 2(8):444–460

Cui YJ, Zhu YG, Zhai RH, Chen DY, Huang YZ, QiuY LJZ (2004) Transfer of metals from soil to vegetables in an area near a smelter in Nanning, China. Environ Int 30(6):785–791

Ding Z, Li Y, Sun Q, Zhang H (2018) Trace elements in soil and selected agricultural plants in the Tongling mining Area of China. Int J Environ Res Public Health 15:202

Dolgen D, Alpaslan MN, Delen N (2007) Agricultural recycling of treatment-plant sludge: a case study for a vegetable-processing factory. J Environ Manag 84:274–281

Eid EM, Alrumman SA, El-Bebany AF, Hesham A, Taher MA, Fawy KF (2017a) The effects of different sewage sludge amendment rates on the heavy metal bioaccumulation, growth and biomass of cucumbers (Cucumis sativus L.). Environ Sci Pollut Res 24:16371–16382

Eid EM, El-Bebany AF, Alrumman SA, Hesham A, Taher MA, Fawy KF (2017b) Effects of different sewage sludge applications on heavy metal accumulation, growth and yield of spinach (Spinacia oleracea L.). Int J Phytoremed 19:340–347

Eid EM, Alrumman SA, El-Bebany AF, Fawy KF, Taher MA, Hesham A, El-Shaboury GA, Ahmed MT (2018a) The evaluation of sewage sludge application as a fertilizer for broad bean (Faba sativa Bernh.) crops. Food Energy Sec 7:1–13

Eid EM, Alrumman SA, Farahat EA, El-Bebany AF (2018b) Prediction models for evaluating the uptake of heavy metals by cucumbers (Cucumis sativus L.) grown in agricultural soils amended with sewage sludge. Environ Monit Assess 190(9):501

Eid EM, Alrumman SA, El-Bebany AF, Fawy KF, Taher MA, Hesham A, El-Shaboury GA, Ahmed MT (2019) Evaluation of the potential of sewage sludge as a valuable fertilizer for wheat (Triticum aestivum L.) crops. Environ Sci Pollut Res 26:392–401

Eid EM, Hussain AA, Taher MA, Galal TM, Shaltout KH, Sewelam N (2020a) Sewage sludge application enhances the growth of Corchorus olitorius plants and provides a sustainable practice for nutrient recirculation in agricultural soils. J Soil Sci Plant Nutr 20:149–159

Eid EM, Shaltout KH, Abdallah SM, Galal TM, El-Bebany AF, Sewelam NA (2020b) Uptake prediction of ten heavy metals by Eruca sativa Mill. cultivated in soils amended with sewage sludge. Bull Environ Contam Toxicol 104:134–143

Elawa OE (2015). Impact assessment of industrial pollution on some economic plants south of Cairo Province, Egypt. M.Sc. Thesis, Helwan Uni. Cairo, p 194

El-Gamal MI, Ibrahim MS, El-Sonbati Mervat A, El-Zeiny AM (2011) Assessment of heavy metal contamination on street dust at New Damietta city. J Environ Sci 40(2):221–237

European Union (2000) Heavy metals in wastes, European Commission on Environment. FNB. 2001. Dietary reference intakes for vitamin A, vitamin K, arsenic, boron, chromium, copper, iodine, iron, manganese, molybdenum, nickel, silicon, vanadium and zinc. National Academy Press, Washington D.C.

FAO/WHO (1996) Toxicological evaluation of certain veterinary drug resedues in food. 1996 Joint Expert Committee on Food Additives (JECFA). 47th Meeting. WHO food additives series 38. World Health Organization, Geneva

FAO/WHO (2011) FAO/WHO. Joint FAO/WHO Food Standards Programme Codex Committee on Contaminants in Foods, Fifth Session, pp 64–89

Farahat EA, Galal TM, Elawa OE, Hassan LM (2017) Health risk assessment and growth characteristics of wheat and maize crops irrigated with contaminated wastewater. Environ Monit Assess 189:535

Fuentes ER, Constantino CL, Silva EE, Dendooven L (2002) Characteristics, and carbon and nitrogen dynamics in soil irrigated with wastewater for different lengths of time. Bioresour Technol 85:179–187

Galal TM (2016) Health hazards and heavy metals accumulation by summer squash (Cucurbita pepo L.) cultivated in contaminated soils. Environ Monit Assess 188(7):434

Galal TM, Shehata HS (2015) Bioaccumulation and translocation of heavy metals by Plantago major L. Grown in contaminated soils under the effect of traffic pollution. Ecol Indic 48:244–251

Galal TM, Shaltout KH, Hassan LM (2012) The Egyptian northern lakes: habitat diversity, vegetation and economic importance. LAP Lambert Academic Publishing Gmbh & Co.KG (ISBN: 978-3-659-10531-9)

Galal TM, Farahat EA, El-Midany MM, Hassan LM (2016) Nutrients and heavy metals accumulation by the giant milkweed Calotropis procera (Aiton) W.T. Aiton in urbanized areas, Egypt. Rend Fis Acc Lincei 27:241–250

Galal TM, Khalafallah AA, Elawa OE, Hassan LM (2018) Human health risks from consuming cabbage (Brassica oleracea L. var. capitata) grown on wastewater irrigated soil. Int J Phytoremed 20(10):1007–1016

Galal TM, Sheded ZA, Hassan LM (2019) Hazards assessment of the intake of trace metals by common mallow (Malva parviflora K.) growing in polluted soils. Int J Phytoremed (accepted)

Gatta G, Gagliardi A, Disciglio G, Lonigro A, Francavilla M, Tarantino E (2018) Irrigation with treated municipal wastewater on artichoke crop: assessment of soil and yield heavy metal content and human risk. Water 10(255):1–18

Gergen I, Harmanescu M (2012) Application of principal component analysis in the pollution assessment with heavy metals of the vegetable food chain in the old mining areas. Chem Cent J 6:156

Hadi F, Hussain F, Hussain M, Ahmad S, Ur Rahman S, Ali N (2014) Phytoextraction of Pb and Cd; the effect of urea and EDTA on Cannabis sativa growth under metals stress. Int J Agron Agric Res 5(3):30–39

Hasnine MT, Huda MF, Khatun R, Saadat Ahasan AHM, Shirin M (2017) Heavy metal contamination in agricultural soil at DEPZA, Bangladesh. Environ Ecol Res 5(7):510–516

Horiguchi H, Oguma E, Sasaki S, Miyamoto K, Ikeda Y, Machida M, Kayama F (2004) Dietary exposure to cadmium at close to the current provisional tolerable weekly intake does not affect renal function among female Japanese farmers. Environ Res 95:20–31

Hu W, Huang B, Tian K, Holm PE, Zhang Y (2017) Heavy metals in intensive greenhouse vegetable production systems along Yellow Sea of China: levels, transfer and health risk. Chemosphere 167:82–90

Jolly YN, Islam A, Akbar S (2013) Transfer of metals from soil to vegetables and possible health risk assessment. Springer Plus 2:385–391

Kabata-Pendias A (2011) Trace elements in soils and plants. CRC Press, Boca Raton

Khan KA, Azhar Naeem A, Awan ZA (2017) Accumulation and translocation of heavy metals from soils to vegetables by sewage effluent application in the territory of Rawalpindi. In: 15th Int conf environ sci technol, Rhodes, Greece, 31 August to 2 September 2017

Kumar V, Chopra AK (2014) Accumulation and translocation of metals in soil and different parts of French bean (Phaseolus vulgaris L.) amended with sewage sludge. Bull Environ Contam Toxicol 92:103–108

Kumar V, Srivastava S, Chauhan RK, Singh J, Kumar P (2018) Contamination, enrichment and translocation of heavy metals in certain leafy vegetables grown in composite effluent irrigated soil. Arch Agric Environ Sci 3(3):252–260

Kumar V, Kumar R, Kumar P (2019) Assessment of heavy metals uptake by cauliflower (Brassica oleracea var. botrytis) grown in integrated industrial effluent irrigated soils: a prediction modeling study. Sci Hortic 257:108682

Leitenmaier B, Küpper H (2013) Compartmentation and complexation of metals in hyperaccumulator plants. Front Plant Sci 4(374):1–13

Li P, Qian H, Howard K, Wu J (2015) Heavy metal contamination of Yellow River alluvial sediments, northwest China. Environ Earth Sci 73(7):3403–3415

Li Y, Wang H, Wang H, Yin F, Yang X, Hu Y (2014) Heavy metal pollution in vegetables grown in the vicinity of a multi-metal mining area in Gejiu, China: total concentrations, speciation analysis, and health risk. Environ Sci Pollut Res 21(21):12569–12582

Liang Y, Yi X, Dang Z, Wang Q, Luo H, Tang J (2017) Heavy metal contamination and health risk assessment in the vicinity of a tailing pond in Guangdong, China. Int J Environ Res Public Health 14(1557):1–17

Liu RL, Li ST, Wang XB, Wang M (2005) Contents of heavy metal in commercial organic fertilizers and organic wastes. J Agro-Environ Sci 24:392–397

Lu XW, Wu X, Wang YW, Chen H, Gao PP, Fu Y (2014) Risk assessment of toxic metals in street dust from a medium-sized industrial city of China. Ecotoxicol Environ Saf 106:154–163

Luo CL, Liuc C, Wangb Y, Liu X, Li F, Zhangb G, Li X (2011) Heavy metal contamination in soils and vegetables near an e-waste processing site, south China. J Hazard Mater 186:481–490

Mahdy AM, Elkhatib EA, Fathi NO (2007) Cadmium, copper, nickel, and lead availability in biosolids-amended alkaline soils. Aust J Basic Appl Sci 1(4):354–363

Mishra A, Tripathi BD (2008) Heavy metal contamination of soil, and bioaccumulation in vegetables irrigated with treated wastewater in the tropical city of Varanasi, India. Toxicol Environ Chem 90(5):861–871

Muchuweti M, Birkett JW, Chinyanga E, Zvauya R, Scrimshaw MD, Lester JN (2006) Heavy metal content of vegetables irrigated with mixtures of wastewater and sewage sludge in Zimbabwe: implications for human health. Agric Ecosyst Environ 112:41–48

Njagi JM, Akunga DN, Njagi MM, Ngugi MP, Njagi EM (2017) Heavy metal concentration in vegetables grown around dumpsites in Nairobi City County, Kenya. World Environ 7(2):49–56

Orabi SA, Salman SR, Magda AFS (2010) Increasing resistance to oxidative damage in cucumber (Cucumis sativus L.) plants by exogenous application of salicylic acid and paclobutrazol. World J Agric Sci 6(3):252–259

Orisakwe OE, Nduka JK, Amadi CN, Dike DO, Bede O (2012) Heavy metals health risk assessment for population via consumption of food crops and fruits in Owerri, South Eastern Nigeria. Chem Cent J 6:77

Planquart P, Bonin G, Prone A, Massiani C (1999) Distribution, movement and plant availability of trace metals in soils amended with sewage sludge compost: application to low metal loading. Sci Total Environ 241:161–179

Radwan MA, Salama AK (2006) Market basket survey for some heavy metals in Egyptian fruits and vegetables. Food Chem Toxicol 44:1273–1278

Rangnekar S, Sahu SK, Pandit GG, Gaikwad VB (2013) Accumulation and translocation of nickel and cobalt in nutritionally important Indian vegetables grown in the artificially contaminated soil of Mumbai, India. Res J Agric For Sci 1:15–21

Shaheen N, Irfan NM, Khan IN (2016) Presence of heavy metals in fruits and vegetables: health risk implications in Bangladesh. Chemosphere 152:431–438

Shaltout KH, Galal TM, El-Komy TM (2013) Biomass, nutrients and nutritive value of Persicaria salicifolia Willd. in the water courses of Nile Delta, Egypt. Rend Fis Acc Lincei 25:167–179

Shaltout KH, Galal TM, El-Komy TM (2016) Phenology, biomass and nutrients of Imperata cylindrica and Desmostachya bipinnata along the water courses in Nile Delta, Egypt. Rend Fis Acc Lincei 27:215–228

Shi W, Liu C, Ding D, Lei Z, Yang Y, Feng C, Zhang Z (2013) Immobilization of heavy metals in sewage sludge by using subcritical water technology. Bioresour Technol 137:18–24

Singh RP, Agrawal M (2010) Effect of different sewage sludge applications on growth and yield of Vigna radiata L. field crop: metal uptake by the plant. Ecol Eng 36:969–972

Smolinska B, Leszczynska J (2017) Photosynthetic pigments and peroxidase activity of Lepidium sativum L. during assisted Hg phytoextraction. Environ Sci Pollut Res 24:13384–13393

Soriano-Disla JM, Gómez I, Navarro-Pedreno J, Jordán MM (2014) The transfer of heavy metals to barley plants from soils amended with sewage sludge with different heavy metal burdens. J Soils Sediment 14:687–696

SPSS (2006) SPSS base 15.0 User’s guide. SPSS Inc., Chicago

Sun HH, Wang ZY, Gao PP, Liu P (2013) Selection of aquatic plants for phytoremediation of heavy metal in electroplate wastewater. Acta Physiol Plant 35:355–364

Tasrina RC, Rowshon A, Mustafizur AMR, Rafiqul I, Ali MP (2015) Heavy metals contamination in vegetables and its growing soil. J Environ Anal Chem 2:142

Tatlioglu T (1993) Cucumber Cucumis sativus L. In: Kalloo G, Bergh BO (eds) genetic improvement of vegetable crops. Pergamon Press Ltd., Tarrytown, pp 197–234

Tzerakis C, Savvas D, Sigrimis N (2012) Responses of cucumber grown in recirculating nutrient solution to gradual Mn and Zn accumulation in the root zone owing to the excessive supply via the irrigating water. J Plant Nutr Soil Sci 175:125–134

US-EPA (2012) Environmental Protection Agency, Region 9, Preliminary remediation goals

US-EPA (2013) Reference dose (RfD): description and use in health risk assessments. Background Document 1A, Integrated Risk Information System (IRIS); United States Environmental Protection Agency (EPA): Washington, DC

USEPA (2015) Risk based screening table. Composite Table: Summary Tab 0615, Accessible from: http://www2.epa.gov/risk/risk based screening table generic tables

Wang XL, Sato T, Xing BS, Tao S (2005) Health risks of heavy metals to the general public in Tianjin, China via consumption of vegetables and fish. Sci Tot Environ 350(1–3):28–37

Wani W, Masoodi KZ, Zaid A, Wani SH, Shah F, Meena VS, Wani SA, Mosa KA (2018) Engineering plants for heavy metal stress tolerance. Rend Fis Acc Lin 29:709

WHO (1995) Inorganic lead. Geneva, World Health Organization, International Programme on Chemical Safety. Environmental Health Criteria 165

WHO (2000) The world health report 2000. World Health Organization, Geneva

WHO (2004) Task group on environmental health criteria for arsenic and Arsenic Compounds 18. World Health Organization, Geneva, pp 1–174

WHO/FAO (2013) Guidelines for the safe use of wastewater and food stuff; wastewater use in agriculture. World Health Organization, Geneva 2(14), p 988

Wongsasuluk P, Chotpantarat S, Siriwong W, Robson M (2014) Heavy metal contamination and human health risk assessment in drinking water from shallow groundwater wells in an agricultural area in Ubon Ratchathani province, Thailand. Environ Geochem Health 36:169–182

Wu J, Sun Z (2016) Evaluation of shallow groundwater contamination and associated human health risk in alluvial plain impacted by agricultural and industrial activities, mid-west China. Expo Health 7438(3):311–329

Wu J, Wang L, Wang S, Tian R, Xue C, Feng W, Li Y (2017) Spatiotemporal variation of groundwater quality in an arid area experiencing long-term paper wastewater irrigation, northwest China. Environ Earth Sci 76(13):460

Xiao R, Bai J, Zhang H, Gao H, Liua X, Wilkes A (2011) Changes of P, Ca, Al and Fe contents in fringe marshes along a pedogenic chronosequence in the Pearl River estuary, South China. Cont Shelf Res 31:739–747

Yang Y, Zhang FS, Li HF, Jiang RF (2009) Accumulation of cadmium in the edible parts of six vegetable species grown in Cd-contaminated soils. J Environ Manag 90:1117–1122

Yang M, Teng Y, Ren WJ, Huang Y, Xu DF, Fu ZC, Ma WT, Luo YM (2016) Pollution and health risk assessment of heavy metals in the agricultural soil around Shimen Realgar Mine. Soils 48:1172–1178

Zeng F, Ali S, Zhang H, Ouyang Y, Qiu B, Wu F, Zhang G (2011) The influence of pH and organic matter content in paddy soil on heavy metal availability and their uptake by rice plants. Environ Pollut 159:84–91

Zhang Y, Wu J, Xu B (2018) Human health risk assessment of groundwater nitrogen pollution in Jinghui canal irrigation area of the loess region, northwest China. Environ Earth Sci 77(7):273

Zhao KL, Liu XM, Xu JM, Selim HM (2010) Heavy metal contaminations in a soil-rice system: identification of spatial dependence in relation to soil properties of paddy fields. J Hazard Mater 181:778–787