酸杆菌
环境化学
冶炼
厚壁菌
微生物
拟杆菌
污染
环境科学
蛋白质细菌
镉
放线菌门
土壤水分
污染物
污染
微生物种群生物学
化学
冶金
生态学
地质学
土壤科学
细菌
生物
材料科学
古生物学
生物化学
16S核糖体RNA
基因
作者
Shuzhen Li,Bingqiang Zhao,Ming Jin,Liang Hu,Hui Zhong,Zhiguo He
标识
DOI:10.1016/j.jhazmat.2020.123255
摘要
Smelter emissions have brought serious heavy metal contamination. Comprehensive surveys of spatial heavy metal and microorganism distribution in soils of smelters aera are still limited. In this study, the horizontal and vertical profiles of heavy metals as well as microorganisms of 80 samples from 5 soil layers of 16 sites in a Pb/Zn smelter were studied. Pollution index indicated the pollution level as Cd > Zn > Pb > As > Cu > Mn > Co > Cr > V, and the severe pollutants were Cd, Zn, Pb, As and Cu. The hazard quotient and hazard index indicated that the topsoil might pose high chronic risk to children mainly due to high content of Pb, As and Cd. The whole smelter was heavily polluted even to the depth of 100 cm as revealed by Nemerow pollution indices. Depth-related microbiota analysis indicated high richness of indigenous microorganisms and significant differences in vertical microbial structure. Proteobacteria was the dominant phylum in all depth layers, followed by Firmicutes, Actinobacteria, Bacteroidetes and Acidobacteria as major phyla. pH and heavy metals Zn, Cu, As, Mn and Cd significantly influenced the microbiota composition. Metagenomic functional prediction suggested antioxidant response, metal exportation and biotransformation play roles in bio-resistance to and bioremoval of heavy metals.
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