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DOI10.1016/j.jenvman.2014.03.004
Evaluation of metal partitioning and mobility in a sulfidic mine tailing pile under oxic and anoxic conditions
Pinto, Patricio X.1; Al-Abed, Souhail R.2; Holder, Christopher1; Reisman, David J.3,4
发表日期2014-07-01
ISSN0301-4797
卷号140页码:135-144
英文摘要

Mining-influenced water emanating from mine tailings and potentially contaminating surface water and groundwater is one of the most important environmental issues linked to the mining industry. In this study, two subsets of Callahan Mine tailings (mainly comprised of silicates, sulfides, and carbonates) were collected using sealed containers, which allowed keeping the samples under anoxic conditions during transportation and storage. Among the potential contaminants, in spite of high concentrations of Cu, Mn, Pb, and Zn present in the solid mine tailings, only small amounts of Mn and Zn were found in the overlying pore water. The samples were subjected to leaching tests at different reduction-oxidation (redox) conditions to compare metal and S mobilization under oxic and anoxic conditions. It was observed that Cd, Cu, Mn, Pb, S, and Zn were mobilized at higher rates under oxic conditions, while Fe was mobilized at a higher rate under anoxic conditions in comparable constant pH experiments. These results suggest that metal mobilization is significantly impacted by redox conditions. When anoxic metal mobilization assessment is required, it is recommended to always maintain anoxic conditions because oxygen exposure may affect metal mobilization. A sequential extraction performed under oxic conditions revealed that most of the metals in the samples were associated with the sulfidic fraction and that the labile fraction was associated with Mn and moderate amounts of Pb and Zn. Published by Elsevier Ltd.


英文关键词Metal mobilization;Mn;Zn;Mine tailings leaching;Mine waste
语种英语
WOS记录号WOS:000337876400015
来源期刊JOURNAL OF ENVIRONMENTAL MANAGEMENT
来源机构美国环保署
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/57630
作者单位1.Pegasus Tech Serv Inc, Cincinnati, OH 45219 USA;
2.US EPA, Natl Risk Management Res Lab, Cincinnati, OH 45268 USA;
3.CDM Smith, Cincinnati, OH 45249 USA;
4.US EPA, Natl Risk Management Res Lab, ORD Engn Tech Support Ctr, Cincinnati, OH 45249 USA
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Pinto, Patricio X.,Al-Abed, Souhail R.,Holder, Christopher,et al. Evaluation of metal partitioning and mobility in a sulfidic mine tailing pile under oxic and anoxic conditions[J]. 美国环保署,2014,140:135-144.
APA Pinto, Patricio X.,Al-Abed, Souhail R.,Holder, Christopher,&Reisman, David J..(2014).Evaluation of metal partitioning and mobility in a sulfidic mine tailing pile under oxic and anoxic conditions.JOURNAL OF ENVIRONMENTAL MANAGEMENT,140,135-144.
MLA Pinto, Patricio X.,et al."Evaluation of metal partitioning and mobility in a sulfidic mine tailing pile under oxic and anoxic conditions".JOURNAL OF ENVIRONMENTAL MANAGEMENT 140(2014):135-144.
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