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Heavy metal accumulation by panicled goldenrain tree(Koelreuteria paniculata) and common elaeocarpus(Elaeocarpus decipens) in abandoned mine soils in southern China

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【Author】 TIAN Dalun1,ZHU Fan1,YAN Wende1,Fang Xi1,XIANG Wenhua1,DENG Xiangwen1,WANG Guangjun1,PENG Changhui1,21.Section of Ecology Research,Central-South University of Forestry & Technology,Hunan 410004,China.2.Institute of Environment Sciences,Department of Biology Sciences,University of Quebec at Montreal,Case postale 8888,succ Centre-Ville,Montre’al(QC) H3C 3P8,Canada

【摘要】 Phytoremediation can be used as a sustainable technology for mine spoil remediation to remove heavy metals.This study investigated the concentration of 7 heavy metal contamination in soil and plant samples at an abandoned mine site.We found that,after vegetation remediation at the abandoned mine site,the reduction rates for 7 heavy metals were in the range of 4.2%-86%,where reduction rates over 50% were achieved for four heavy metals(Zn,Mn,Cd,Ni).Transfer coeffcients of the panicled goldenrain tree(Koelreuteria paniculata Laxm) and the common elaeocarpus(Elaeocarpus decipens) for Zn,Mn,Ni,and Co were more than 1.Enrichment coeffcients of both trees for Mn were higher than 1.Our results suggest that the panicled goldenrain tree and the common elaeocarpus tree may act as accumulators in remediation.Moreover,the woody vegetation remediation in abandoned mining areas play an important role in improving scenery besides removing heavy metal from contaminated soil.

【Abstract】 Phytoremediation can be used as a sustainable technology for mine spoil remediation to remove heavy metals.This study investigated the concentration of 7 heavy metal contamination in soil and plant samples at an abandoned mine site.We found that,after vegetation remediation at the abandoned mine site,the reduction rates for 7 heavy metals were in the range of 4.2%-86%,where reduction rates over 50% were achieved for four heavy metals(Zn,Mn,Cd,Ni).Transfer coeffcients of the panicled goldenrain tree(Koelreuteria paniculata Laxm) and the common elaeocarpus(Elaeocarpus decipens) for Zn,Mn,Ni,and Co were more than 1.Enrichment coeffcients of both trees for Mn were higher than 1.Our results suggest that the panicled goldenrain tree and the common elaeocarpus tree may act as accumulators in remediation.Moreover,the woody vegetation remediation in abandoned mining areas play an important role in improving scenery besides removing heavy metal from contaminated soil.

【基金】 As a key project under the State Forestry Administration of China (2006-11, 2006-17, 2005-08);this project was funded by the National Natural Science Foundation of China (No. 30571487, 30771700);the Furong Scholar Program, the Urban Forest Ecological Key Laboratory of Hunan Province (No. 06FJ3083);the Platform Construction Project under the Ministry of Science and Technology of China
  • 【文献出处】 Journal of Environmental Sciences ,环境科学学报(英文版) , 编辑部邮箱 ,2009年03期
  • 【分类号】X503
  • 【被引频次】22
  • 【下载频次】86
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