Geochemical assessment and spatial analysis of heavy metals pollution around coal-fired power station

被引:0
作者
Vitaly G. Linnik
Tatiana M. Minkina
Tatiana V. Bauer
Anatoly A. Saveliev
Saglara S. Mandzhieva
机构
[1] Russian Academy of Sciences,Vernadsky Institute of Geochemistry and Analytical Chemistry
[2] Southern Federal University,undefined
[3] Kazan Federal University,undefined
来源
Environmental Geochemistry and Health | 2020年 / 42卷
关键词
Heavy metals; Assessment; Soil; Electrical power plant; Geochemical assessment; GAM;
D O I
暂无
中图分类号
学科分类号
摘要
Coal-fired power stations are significant sources of soil contamination with heavy metals and a source of hazard to human health. The soil samples (n = 25) selected in the area around Novocherkassk Power Station (Rostov Region, Russia) within a radius of up to 20 km revealed the enrichment with Pb, Cu and Zn. The heavy metals (HM) content in soil is reduced in the following sequence: Mn > Cr > Zn > Ni > Cu > Pb > Co. The correlation diagrams of the HM total content in soils revealed a significant association between the following HM pairs: Cu–Pb, Ni–Cu, Cd–Ni, Cd–Cu (r ≥ 0.7, p < 0.001). The concentration coefficient (Kc) and the total pollution coefficient (Zc) were used to estimate anthropogenic pollution. The use of generalized additive model (GAM) to detect the dependence of HM distribution on factors revealed the significance of the source distance. The influence of wind rhumb on HM distribution has a complex nonlinear nature. A GAM shows a good performance for all data sets: R2 = 0.71, 81% deviance explained for Zn, R2 = 0.85, 91% deviance explained for Cd, R2 = 0.63, 70% deviance explained for Ni. Thus, GAM model reveals significant factors (Dist_km, rhumb) in forming pollution by heavy metals in studied impact zone and proved a valuable approach to assess the degree and sources of pollution in soils on a large scale.
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页码:4087 / 4100
页数:13
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[1]  
Agrawal P(2010)Assessment of contamination of soil due to heavy metals around coal fired thermal power plants at Singrauli region of India Bulletin of Environmental Contamination and Toxicology 85 219-223
[2]  
Mittal A(2015)Sources of metal pollution in the urban atmosphere (A case study: Tuzla, Istabul) Journal of Environmental Health Science and Engineering 13 79-572
[3]  
Prakash R(2005)Use of spatial factors in the analysis of heavy metals in sediments in a Brazilian coastal region Environmetrics 16 563-713
[4]  
Kumar M(1983)Distribution of lead, cobalt and nickel in the soil around a coal-fired power plant Journal of Plant Nutrition and Soil Science 146 705-837
[5]  
Singh TB(2007)Heavy metal partition in acid soils contaminated by coal power plant Journal of the Brazilian Chemical Society 18 831-52
[6]  
Tripathi SK(2016)Environmental assessment of heavy metals around the largest coal fired power plant in Serbia CATENA 139 44-9
[7]  
Aksu A(2018)Trace metal enrichment observed in soils around a coal fired power plant in South Africa Clean Air Journal 28 1-134
[8]  
Bailey TC(2015)A map of the topsoil organic carbon content of Europe generated by a generalized additive model European Journal of Soil Science 66 121-461
[9]  
Barcellos C(2015)Human exposure risks for metals in soil near a coal-fired power-generating plant Archives of Environmental Contamination and Toxicology 68 451-853
[10]  
Krzanowski WJ(2018)Ecological evaluation of polymetallic soil quality: The applicability of culture dependent methods of bacterial communities studying Journal of Soils and Sediments 14 1589-19