Environmental issues and challenges confronting surface waters in South America: A review

Environmental Challenges - Tập 3 - Trang 100049 - 2021
Temitope D. Timothy Oyedotun1, Nasrudeen Ally1
1Department of Geography, Faculty of Earth and Environmental Sciences, University of Guyana, P. O. Box 10 1110, Turkeyen Campus, Greater Georgetown, Guyana, South America

Tài liệu tham khảo

Ahmed, 2000, 191 Alcayaga, 2019, Detecting and quantifying hydromorphology changes in a Chilean river after 50 years of dam operation, J. S. Am. Earth Sci., 93, 253, 10.1016/j.jsames.2019.04.018 Anthony, 2012, The role of fluvial sediment supply and river-mouth hydrology in the dynamics of the muddy, Amazon-dominated Amapá-Guianas coast, South America: a three-point research agenda, J. S. Am. Earth Sci., 44, 18, 10.1016/j.jsames.2012.06.005 Armijos, 2013, Suspended sediment dynamics in the Amazon River of Peru, J. S. Am. Earth Sci., 44, 75, 10.1016/j.jsames.2012.09.002 Arróspide, 2018, Morphological evolution of the Maipo river in central Chile: influence of instream gravel mining, Geomorphol. Amst., 306, 182, 10.1016/j.geomorph.2018.01.019 Beilinson, 2017, The Quequén Salado river basin: geology and biochronostratigraphy of the mio-pliocene boundary in the southern Pampean Plain, Argentina, J. S. Am. Earth Sci., 362, 10.1016/j.jsames.2017.04.002 Birkinshaw, 2010, The effect of forest cover on peak flow and sediment discharge-an integrated field and modelling study in central-southern Chile, Hydrol. Process., 25, 1284, 10.1002/hyp.7900 Blasi, 1990, The Colorado river of Argentina: source, climate, and transport as controlling factors on sand composition, J. S. Am. Earth Sci., 3, 65, 10.1016/0895-9811(90)90018-V Blöschl, 2019, Changing climate both decreases and increases European river floods, Nature, 573, 108, 10.1038/s41586-019-1495-6 Blume, 2010, Water quality assessment of the Sinos River, southern Brazil, Braz. J. Med. Biol. Res., 70, 1185 Benson, 2018, New ecological risk indices for evaluating heavy metals contamination in aquatic sediment: a case study of the Gulf of Guinea, Reg. Stud. Mar. Sci., 18, 44, 10.1016/j.rsma.2018.01.004 Bravo, 2013, Impact of projected climate change on the hydrologic regime of the upper Paraguay river Basin, Clim. Change, 127, 27, 10.1007/s10584-013-0816-2 Brown, 2018, Natural vs anthropogenic streams in Europe: history, ecology and implications for restoration, river-rewilding and riverine ecosystem services, Earth-Sci. Rev., 180, 185, 10.1016/j.earscirev.2018.02.001 Bryn, 2013, A high resolution GIS null model of potential forest expansion following land use changes in Norway, Scand. J. For. Res., 28, 81, 10.1080/02827581.2012.689005 Buytaert, 2013, Water resources in South America: sources and supply, pollutants and perspectives Campuzano, 2014, Water resources assessment Casado, 2013, Influence of dam-induced hydrological regulation on summer water temperature: Sauce Grande River, Argentina. Ecohydrol. Hydrobiol., 6, 523 Casimiro, 2011, Assessment of climate change impacts on the hydrology of the Peruvian Amazon-Andes Basin, Hydrol. Process., 25, 3721, 10.1002/hyp.8097 Casimiro, 2012, Basin-scale analysis of rainfall and runoff in Peru (1969–2004): pacific, Titicaca and Amazonas drainages, J. Hydrol., 57, 625, 10.1080/02626667.2012.672985 Chen, 2019, High throughput profiling of antibiotic resistance gene dynamic in a drinking water river-reservoir system, Water Res., 149, 179e189, 10.1016/j.watres.2018.11.007 Chen, 2021, The profiling of elements and pesticides in surface water in Nanjing, China with global comparisons, Sci. Total Environ. Contreras, 2011, Remote sensing estimates of supplementary water consumption by arid ecosystems of central Argentina, J. Hydrol., 397, 10, 10.1016/j.jhydrol.2010.11.014 Costa, 2003, Effects of large-scale changes in land cover on the discharge of the Tocantins River, southeastern Amazonia, J. Hydrol., 283, 206, 10.1016/S0022-1694(03)00267-1 Cunha, 2011, Contiguous urban rivers should not be necessarily submitted to the same management plan: the case of Tietê and Pinheiros Rivers (São Paulo-Brazil), An. Acad. Bras. Cienc., 83, 1465, 10.1590/S0001-37652011000400032 Donoso, 2020, Microplastics in tropical Andean rivers: a perspective from a highly populated Ecuadorian Basin without wastewater treatment, Heliyon, 6, e04302, 10.1016/j.heliyon.2020.e04302 Espinosa, 2020, Diatom responses to natural and anthropogenic environmental changes in a Patagonian River, Argentina, J. S. Am. Earth Sci., 102, 10.1016/j.jsames.2020.102677 Espinoza, 2013, The major floods in the Amazonas River and tributaries (western Amazon Basin) during the 1970–2012 period: a focus on the 2012 flood, J. Hydrometeorol., 14, 1000, 10.1175/JHM-D-12-0100.1 Espinoza, 2012, From drought to flooding: understanding the abrupt 2010–11 hydrological annual cycle in the Amazonas River and tributaries, Environ. Res. Lett., 7, 10.1088/1748-9326/7/2/024008 Espinoza, 2011, Climate variability and extreme drought in the Upper Solimões River (western Amazon Basin): understanding the exceptional 2010 drought, Geophys. Res. Lett., 38, 10.1029/2011GL047862 François, 2019, Design considerations for riverine floods in a changing climate – a review, 574, 557 Frappart, 2013, Changes in terrestrial water storage versus rainfall and discharges in the Amazon Basin, Int. J. Climatol., 33, 3029, 10.1002/joc.3647 Gall, R.D., Birgeneheier, L.P., Vanden Berg, M.D., 2017. Highly seasonal and perennial fluvial facies: implications for climatic control on the Douglas Creek and Parachute Creek members, Green river formation, southeastern Uinta Basin, Utah, U.S.A. J. Sediment. Res. 87, 1019–1047. 10.2110/jsr.2017.54. Gautier, 2010, Channel and floodplain sediment dynamics in a reach of the tropical meandering Rio Beni (Bolivian Amazonia), Earth Surf. Process. Landf., 35, 1838, 10.1002/esp.2065 Gerolin, 2020, Microplastics in sediments from Amazon Rivers, Brazil. Sci. Total Environ., 749 Ghadiry, 2012, A new GISbased model for automated extraction of Sand Dune encroachment case study: Dakhla Oases, Western Desert of Egypt, Egypt. J. Rem. Sens. Space Sci., 15, 53 Ghinassi, 2018, Influence of extreme and annual floods on point-bar sedimentation: inferences from Powder River, Montana, Paleoceanogr. Paleoclimatol., 131, 71 Goolsby, 1993, Occurrence, Distribution and Transport of Agricultural Chemicals in Surface Waters of the Midwestern United States Gorman, 2009, The physical basis for increases in precipitation extremes in simulations of 21st-century climate change, 106, 14733 Grigg, 2018 Guimberteau, 2017, Impacts of future deforestation and climate change on the hydrology of the Amazon Basin: a multi-model analysis with a new set of land-cover changes scenarios, Hydrol. Earth Syst. Sci., 21, 1455, 10.5194/hess-21-1455-2017 Halac, 2020, Paleolimnological reconstruction of the centennial eutrophication processes in a sub-tropical South American reservoir, J. S. Am. Earth Sci., 103, 10.1016/j.jsames.2020.102707 Hayden, 1988, Flood climates, 13 Higgins, 2016, Suspended sediment transport in the Magdalena River (Colombia, South America): hydrologic regime, rating parameters and effective discharge variability, Int. J. Sediment Res., 31, 25, 10.1016/j.ijsrc.2015.04.003 Hoorman, 2008, Agricultural impacts on lake and stream water quality in Grand Lake St. Marys, western Ohio, 193, 309 Hoang, 2020, Heavy metal contamination trends in surface water and sediments of a river in a highly-industrialized region, Environ. Technol. Innov., 20, 10.1016/j.eti.2020.101043 Hossain, 2016, Assessment of trace contaminants in sediments of the Poshur river nearby Mongla Port of Bangladesh, J. Nucl. Sci. Technol. App., 25, 7 Huang, 2015, Linkages between hydrological drought, climate indices and human activities: a case study in the Columbia river Basin, Int. J. Climatol., 36, 280, 10.1002/joc.4344 Hyndman, 1996, Sample quantiles in statistical packages, Am. Stat., 50, 361 Islam, 2017, Contamination and ecological risk assessment of trace elements in sediments of the rivers of the Sundarban mangrove forest, Bangladesh, Mar. Pollut. Bull., 124, 356, 10.1016/j.marpolbul.2017.07.059 Islam, 2020, Heavy metal contamination and ecological risk assessment in water and sediments of the Halda river, Bangladesh: a natural fish breeding ground, 160 Knox, 2000, Sensitivity of modern and holocene floods to climate change, Quat. Sci. Rev., 19, 439, 10.1016/S0277-3791(99)00074-8 Kumar, 2019, Global evaluation of heavy metal content in surface water bodies: a meta-analysis using heavy metal pollution indices and multivariate statistical analyses, Chemosphere, 124364 Langerwisch, 2013, Potential effects of climate change on inundation patterns in the Amazon Basin, Hydrol. Earth Syst. Sci., 17, 2247, 10.5194/hess-17-2247-2013 Latrubesse, 2009, The geomorphologic response of a large pristine alluvial river to tremendous deforestation in the South American tropics: the case of the Araguaia River, Geomorphology, 113, 239, 10.1016/j.geomorph.2009.03.014 Levy, 2018, Land use change increases streamflow across the arc of deforestation in Brazil, Geophys. Res. Lett., 45, 3520, 10.1002/2017GL076526 Lindell, 2010, Land-use change versus natural controls on stream water chemistry in the Subandean Amazon, Peru. Appl. Geochem., 25, 485, 10.1016/j.apgeochem.2009.12.013 Llopart, 2014, Climate change impact on precipitation for the Amazon and La Plata Basins, Clim. Change, 125, 111, 10.1007/s10584-014-1140-1 Lobato, 2015, Construction of a novel water quality index and quality indicator for reservoir water quality evaluation: a case study in the Amazon region, J. Hydrol., 522, 674, 10.1016/j.jhydrol.2015.01.021 Lobo, 2015, Time-series analysis of Landsat-MSS/TM/OLI images over Amazonian waters impacted by gold mining activities, Remote Sens. Environ., 157, 170, 10.1016/j.rse.2014.04.030 Lopes, 2016, Trend and uncertainty in spatial-temporal patterns of hydrological droughts in the Amazon Basin, Geophys. Res. Lett., 43, 3307, 10.1002/2016GL067738 Macklin, 2006, A geomorphological approach to the management of rivers contaminated by metal mining, Geomorphology, 79, 423, 10.1016/j.geomorph.2006.06.024 Manville, 2009, Source to sink: a review of three decades of progress in the understanding of volcaniclastic processes, deposits, and hazards, Sediment. Geol., 220, 136, 10.1016/j.sedgeo.2009.04.022 Marmontel, 2018, Effects of land use and sampling distance on water quality in tropical headwater springs (Pimenta Creek, São Paulo State, Brazil), Sci. Total Environ., 622-623, 690, 10.1016/j.scitotenv.2017.12.011 Marques, 2020, Analysis of groundwater and river stage fluctuations and their relationship with water use and climate variation effects on Alto Grande Watershed, northeastern Brazil, J. S. Am. Earth Sci., 103, 10.1016/j.jsames.2020.102723 Mauas, 2011, Long-term solar activity influences on South American Rivers, J. Atmos. Sol.-Terr. Phys., 73, 377, 10.1016/j.jastp.2010.02.019 Mayora, 2020, Multiscale environmental heterogeneity in a large river-floodplain system, J. S. Am. Earth Sci., 100, 10.1016/j.jsames.2020.102546 Mello, 2018, Effects of land use and land cover on water quality of low-order streams in southeastern Brazil: watershed versus Riparian Zone, Catena, 167, 130, 10.1016/j.catena.2018.04.027 Miserendino, 2011, Assessing land-use effects on water quality, in-stream habitat, riparian ecosystems and biodiversity in Patagonian northwest streams, Sci. Total Environ., 409, 612, 10.1016/j.scitotenv.2010.10.034 Milly, 2002, Increasing risk of great floods in a changing climate, 415, 514 Mokarram, 2020, Effects of heavy metal contamination on river water quality due to the release of industrial effluents, J. Clean. Prod., 277, 10.1016/j.jclepro.2020.123380 Mora, 2010, The Apure River: geochemistry of major and selected trace elements in an Orinoco River tributary coming from the Andes, Venezuela, Hydrol. Process., 24, 3798, 10.1002/hyp.7801 Mora, 2014, Climate changes of hydrometeorological and hydrological extremes in the Paute Basin, Ecuadorean Andes., Hydrol. Earth Syst. Sci., 18, 631, 10.5194/hess-18-631-2014 Moreno, 2008 Ochoa-Tocachi, 2016, Impacts of land use on the hydrological response of tropical Andean catchments, Hydrol. Process., 30, 4074, 10.1002/hyp.10980 Oliveira, 2017, Assessment of climate change impacts on streamflow and hydropower potential in the headwater region of the Grande River Basin, southeastern Brazil, Int. J. Climatol., 37, 5005, 10.1002/joc.5138 Orfeo, 1999, Sedimentological characteristics of small rivers with loessic headwaters in the Chaco, South America, Quat. Int., 62, 69, 10.1016/S1040-6182(99)00024-5 Oyedotun, 2020, Quantitative assessment of the drainage morphometric characteristics of Chaohu Lake Basin from SRTM DEM Data: a GIS-based approach, Geol. Ecol. Landsc., 10.1080/24749508.2020.1812147 Paccini, 2017, Intra-seasonal rainfall variability in the Amazon Basin related to large-scale circulation patterns: a focus on western Amazon-Andes transition region, Int. J. Climatol., 38, 2386, 10.1002/joc.5341 Panarello, 2009, Large scale meteorological phenomena, ENSO and ITCZ, define the Paraná River isotope composition, J. Hydrol., 365, 105, 10.1016/j.jhydrol.2008.11.026 Panisset, 2017, Contrasting patterns of the extreme drought episodes of 2005, 2010 and 2015 in the Amazon Basin, Int. J. Climatol., 38, 1096, 10.1002/joc.5224 Pasquini, 2011, Hydrochemistry and nutrients dynamic in the Suquía River urban catchment's, Córdoba, Argentina, Environ. Earth Sci., 65, 453, 10.1007/s12665-011-0978-z Paz, 2010, Large-scale modelling of channel flow and floodplain inundation dynamics and its application to the Pantanal (Brazil), Hydrol. Process., 25, 1498, 10.1002/hyp.7926 Peluso, 2012, Physicochemical and ecotoxicological based assessment of bottom sediments from the Luján River Basin, Buenos Aires, Argentina, Environ. Monit. Assess., 185 Peluso, 2020, Integrated analysis of the quality of water bodies from the lower Paraná river Basin with different productive uses by physicochemical and biological indicators, Environ. Pollut., 263, 10.1016/j.envpol.2020.114434 Peña-Monné, 2018, Geomorphological dynamics and flood hazards of the Blanquito River (Tafi del Valle, NW Argentina), J. S. Am. Sci., 86, 231 Pereira, 2014, Seasonal patterns of rainfall and river isotopic chemistry in northern Amazonia (Guyana): from the headwater to the regional scale, J. S. Am. Earth Sci., 52, 108, 10.1016/j.jsames.2014.02.005 Pierson, 2014, Hydrogeomorphic effects of explosive volcanic eruptions on drainage basins, Annu. Rev. Earth Planet Sci., 42, 469, 10.1146/annurev-earth-060313-054913 Pimentel, 2000, Soil erosion and the threat to food security and the environment, Ecosyst. Health, 6, 221, 10.1046/j.1526-0992.2000.006004221.x Rashdi, 2015, Distribution of heavy metals in the coastal area of Abu Dhabi in the United Arab Emirates, Mar. Pollut. Bull., 97, 494, 10.1016/j.marpolbul.2015.05.052 Reis, 2017, Influence of environmental and anthropogenic factors at the bottom sediments in a Doce River tributary in Brazil, Environ. Sci. Pollut. Res., 24, 7456, 10.1007/s11356-017-8443-5 Rigacci, 2013, Effect of a reservoir in the water quality of the Reconquista River, Buenos Aires, Argentina, Environ. Monit. Assess., 185, 9161, 10.1007/s10661-013-3243-y Rivera, 2017, Spatio-temporal patterns of the 2010–2015 extreme hydrological drought across the central Andes, Argentina., Water Res., 9, 652 Rodrigues, 2012, Dam construction and loss of geodiversity in the Araguari River Basin, Brazil, Land Degrad. Dev., 23, 419, 10.1002/ldr.2157 Rojas, 2017, Urban growth and flood disasters in the Coastal River Basin of south-central Chile (1943–2011), Sustainability, 9, 195, 10.3390/su9020195 Romic, 2003, Heavy metals distribution in agricultural topsoils in an urban area, Environ. Geol., 43, 795, 10.1007/s00254-002-0694-9 Rovedatti, 2001, Monitoring of organochlorine and organophosphorus pesticides in the water of the Reconquista River (Buenos Aires, Argentina), Water Res., 35, 3457, 10.1016/S0043-1354(01)00058-6 Rousseau, 2019, Controls on the geochemistry of suspended sediments from large tropical South American Rivers (Amazon, Orinoco and Maroni), Chem. Geol., 522, 38, 10.1016/j.chemgeo.2019.05.027 Rozo, 2014, Remote sensing-based analysis of the planform changes in the upper Amazon River over the period 1986–2006, J. S. Am. Earth Sci., 51, 28, 10.1016/j.jsames.2013.12.004 Rudorff, 2014, Flooding dynamics on the lower Amazon floodplain: 1. Hydraulic controls on water elevation, inundation extent, and river-floodplain discharge, Water Resour. Res., 50, 619, 10.1002/2013WR014091 Rudorff, 2014, Flooding dynamics on the lower Amazon floodplain: 2. Seasonal and interannual hydrological variability, Water Resour. Res., 50, 635, 10.1002/2013WR014714 Russel, 2017, Global sediment yields from urban and urbanizing watersheds, Earth-Sci. Rev., 168, 73, 10.1016/j.earscirev.2017.04.001 Salas, 2016, Recent climatic events controlling the hydrological and the aquifer dynamics at arid areas: the case of Huasco River Watershed, northern Chile, Sci. Total Environ., 571, 178, 10.1016/j.scitotenv.2016.07.132 Salem, 2010, Linear and non-linear contrast enhancement image: IJCSNS, Int. J. Comp. Sci. Net. Sec., 10, 139 Satyamurty, 2009, Rainfall trends in the Brazilian Amazon Basin in the past eight decades, Theor. Appl. Climatol., 99, 139, 10.1007/s00704-009-0133-x Satyamurty, 2013, A quick look at the 2012 record flood in the Amazon Basin, Geophys. Res. Lett., 40, 1396, 10.1002/grl.50245 Schillereff, 2014, Flood stratigraphies in lake sediments: a review, Earth-Sci. Rev., 135, 17, 10.1016/j.earscirev.2014.03.011 Schwendel, 2015, Interaction between meander dynamics and floodplain heterogeneity in a large tropical sand-bed river: the Rio Beni, Bolivian Amazon, Earth Surf. Process Landf., 40, 2026, 10.1002/esp.3777 Scordo, 2020, Natural and human impacts on the landscape evolution and hydrography of the Chico River Basin (Argentinean Patagonia), 195 Setia, 2020, Impact assessment of metal contamination in surface water of Sutlej River (India) on human health risks, Environ. Pollut., 265, 10.1016/j.envpol.2020.114907 Shaibur, 2019, Drinking water quality of hand tube well water at suburban areas of Jashore municipality, Bangladesh, J. Jess. Univ. Sci. Tech., 4, 11 Shaibur, 2019, Water quality of different sources at Buri Goalini and Gabura Unions of Shyamnagar Upazila, Bangladesh, Environ. Biol. Res., 1, 32 Siddique, 2021, Assessment of heavy metal contamination in the surficial sediments from the lower Meghna River estuary, Noakhali coast, Bangladesh, Intern. J. Sed. Res., 36, 384, 10.1016/j.ijsrc.2020.10.010 Silva, 2010, Effects of land cover on chemical characteristics of streams in the Cerrado region of Brazil, Biogeochemistry, 105, 75, 10.1007/s10533-010-9557-8 Smolders, A., Hudson-Edwards, K., Velde, G. V., & Roelofs, J. 2004., Controls on water chemistry of the Pilcomayo River (Bolivia, South-America). Appl. Geochem. 19 (11), 1745-1758. 10.1016/j.apgeochem.2004.05.001. Snodgrass, 2008, Microcosm investigations of stormwater pond sediment toxicity to embryonic and larval amphibians: variation in sensitivity among species, Environ. Pollut., 154, 291, 10.1016/j.envpol.2007.10.003 Tang, 2010, Heavy metal sources and associated risk in response to agricultural intensification in the estuarine sediments of Chaohu Lake Valley, East China, J. Hazard. Mater., 176, 945, 10.1016/j.jhazmat.2009.11.131 Tomasella, 2012, The droughts of 1997 and 2005 in Amazonia: floodplain hydrology and its potential ecological and human impacts, Clim. Change, 116, 723, 10.1007/s10584-012-0508-3 Uddin, 2018, Spatial variability in the distribution of trace metals in groundwater around the Rooppur nuclear power plant in Ishwardi, Bangladesh, Groundw. Sustain. Dev., 10.1016/j.gsd.2018.06.002 Uddin, 2021, A review of water quality index models and their use for assessing surface water quality, Ecol. Indic., 122, 10.1016/j.ecolind.2020.107218 Umazano, 2020, Volcaniclastic sedimentation influenced by logjam breakups? An example from the Blanco River, Chile. J. S. Am. Earth Sci., 98 Valera, 2016, The role of environmental land use conflicts in soil fertility: a study on the Uberaba River Basin, Brazil. Sci. Total Environ., 562, 463, 10.1016/j.scitotenv.2016.04.046 Valera, 2017, A legal framework with a scientific basis for applying the ‘polluter pays principle’ to soil conservation in rural watersheds in Brazil, Land Use Policy, 66, 61, 10.1016/j.landusepol.2017.04.036 Vauchel, 2017, A reassessment of the suspended sediment load in the Madeira River Basin from the Andes of Peru and Bolivia to the Amazon River in Brazil, based on 10 years of data from the HYBAM monitoring programme, J. Hydrol., 553, 35, 10.1016/j.jhydrol.2017.07.018 Vezzoli, 2013, Quantifying modern erosion rates and river-sediment contamination in the Bolivian Andes, J. S. Am. Earth Sci., 45, 42, 10.1016/j.jsames.2013.02.001 Viola, 2014, Impacts of land-use changes on the hydrology of the Grande River Basin headwaters, southeastern Brazil, Water Resour. Manag., 28, 4537, 10.1007/s11269-014-0749-1 Viola, 2014, Assessing climate change impacts on upper Grande River Basin hydrology, southeast Brazil, Int. J. Climatol., 35, 1054, 10.1002/joc.4038 Vörösmarty, 2010, Global threats to human water security and river biodiversity, Nature, 467, 555, 10.1038/nature09440 Walsh, 2005, Stream restoration in urban catchments through redesigning stormwater systems: looking to the catchment to save the stream, J. N. Am. Benthol. Soc., 24, 690, 10.1899/04-020.1 Wang, 2016, Characteristics of aquatic bacterial community and the influencing factors in an urban river, Sci. Total Environ., 569-570, 382, 10.1016/j.scitotenv.2016.06.130 Whitworth, 2012, Drought, floods and water quality: drivers of a severe hypoxic blackwater event in a major river system (the southern Murray-Darling Basin, Australia), J. Hydrol., 450, 190, 10.1016/j.jhydrol.2012.04.057 Wilhite, 2017, Drought as hazard: understanding the natural and social context, 3, 10.1201/9781315265551-3 Windsor, 2019, Microplastic ingestion by riverine macroinvertebrates, Sci. Total Environ., 646, 68, 10.1016/j.scitotenv.2018.07.271 Xe, 2021, River contamination shapes the microbiome and antibiotic resistance in sharpbelly (Hemiculter leucisculus), Environ. Poll., 268 Yao, 2019, A review of microplastics in sediments: Spatial and temporal occurrences, biological effects, and analytic methods, Quat. Int., 519, 274, 10.1016/j.quaint.2019.03.028 Yegemova, 2018, Identifying the key information and land management plans for water conservation under dry weather conditions in the Border areas of the Syr Darya River in Kazakhstan, 10, 1754 Zandonadi, 2015, Changes in precipitation extremes in Brazil (Paraná River Basin), Theor. Appl. Climatol., 123, 741, 10.1007/s00704-015-1391-4 Zhang, 2018, Digital mapping and spatial characteristics analyses of heavy metal content in reclaimed soil of industrial and mining abandoned land, Sci. Rep., 8, 1, 10.1038/s41598-018-35624-9