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华北矿区残留态铜、铅在土壤剖面中的分布与迁移
作者姓名:LU Cong  WU Yao-Guo  HU Si-Hai  ZHANG Xiao-Yan  FU Yi-Lin
作者单位:School of Natural and Applied Science, Northwestern Polytechnical University, Xi’an 710129 (China)
基金项目:The work was financially supported by the Land and Resources Scientific Research of China from a Special Fund in the Public Interest(201111020),the National Natural Science Foundation of China(.40872164 and 41502240),the Northwestern Polytechnical University Foundation for Fundamental Research(JCY20130145),the China Geological Survey Project(12120114056201),the Fund of the Key Laboratory of Groundwater Contamination and Remediation
摘    要:Residual heavy metals are commonly considered to be immobile in soils, leading to an underestimation of their environmental risk. This study investigated the distribution and transport of residual heavy metals along soil profiles, using the Xiaoqinling gold mining region in North China as a case study. Soil samples were collected at three depths from three locations near the tailing heap. The speciation of copper (Cu) and lead (Pb) (exchangeable, carbonate-bound, Fe-Mn oxide-bound, organic matter-bound, and residual fractions) was determined using a sequential extraction procedure. The residual fraction’s morphology was observed using scanning electron microscopy (SEM). Results showed that metal fraction distributions along the soil profiles were influenced by each fraction’s mobility. Residual fraction with high chemical stability cannot be transformed from or into other fractions. This led to the conclusion that the high concentration of residual metals in soils mainly resulted from residual fraction transport.The SEM analysis showed that fine particles (submicrons) were mainly attached to large particles and were likely released and transported by water flow. The more sorptive fractions (non-residual fractions) were mainly retained in the top soil, and the more mobile fractions (residual fraction) were mainly leached to the deep soil. Cu and Pb concentrations in the residual fraction decreased slightly and those in the non-residual fractions decreased significantly with soil depth. These suggest a relatively higher residual metal mobility along the soil pro?les. Therefore, residual metals can be transported in soils and their environmental risk can not be ignored in assessing soil contamination.

关 键 词:heavy  metal  speciation  metal  concentration  mobility  sequential  extraction  soil  contamination

Distribution and transport of residual lead and copper along soil profiles in a mining region of North China
LU Cong,WU Yao-Guo,HU Si-Hai,ZHANG Xiao-Yan,FU Yi-Lin.Distribution and transport of residual lead and copper along soil profiles in a mining region of North China[J].Pedosphere,2016,26(6):848-860.
Authors:LU Cong  WU Yao-Guo  HU Si-Hai  ZHANG Xiao-Yan and FU Yi-Lin
Institution:School of Natural and Applied Science, Northwestern Polytechnical University, Xi'an 710129(China)
Abstract:
Keywords:heavy metal speciation  metal concentration  mobility  sequential extraction  soil contamination
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