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铜陵相思谷尾矿用于处理酸性矿山排水的实验研究
摘要点击 1542  全文点击 764  投稿时间:2011-06-24  修订日期:2011-07-31
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中文关键词  相思谷尾矿  酸性矿山排水  淋滤  中和  重金属
英文关键词  mine tailings of Xiangsi Valley  acid mine drainage  leaching  neutralization  heavy metal
作者单位E-mail
张楠 合肥工业大学资源与环境工程学院, 合肥 230009 zhangnan0127@126.com 
陈天虎 合肥工业大学资源与环境工程学院, 合肥 230009 chentianhu168@vip.sina.com 
周跃飞 合肥工业大学资源与环境工程学院, 合肥 230009  
黎少杰 合肥工业大学资源与环境工程学院, 合肥 230009  
金杰 合肥工业大学资源与环境工程学院, 合肥 230009  
王延明 合肥工业大学资源与环境工程学院, 合肥 230009  
中文摘要
      铜陵相思谷尾矿是夕卡岩型矿床尾矿的典型代表, 以富含碳酸盐为特征. 为了考察该尾矿砂在AMD淋滤作用下重金属的迁移行为及用于处理AMD的有效性, 研究在自行设计的动态实验柱中填充尾矿砂, 在保持进水理化性质不变的条件下对其进行80 d的连续淋滤实验, 实验过程中定期检测出水的成分, 实验结束后对尾矿砂中元素赋存特征进行分析. 结果表明, 实验过程中出水pH值始终维持在7.5以上; Cu、Zn、Fe离子浓度分别保持在0.1、0.4、1 mg·L-1以下; 尾矿砂的渗透系数逐渐降低, 由初始的0.23 cm·s-1降至实验结束时的0.10 cm·s-1; 固体中元素赋存形态分析结果表明, 进水Cu2+、Zn2+主要通过2种作用被固定: Fe氢氧化物的吸持和自身沉淀(形成碳酸盐). 研究发现铜陵相思谷尾矿具有较强的酸中和潜力, 在中和过程中不仅不会产生重金属离子的淋滤迁移, 相反会对其产生沉淀和吸附, 因此, 可以考虑将该尾矿作为AMD处理的有用材料进行废物利用.
英文摘要
      Mine tailings in Xiangsi Valley, Tongling, China, is a typical skarn-type tailing with high contents of carbonates. This study designed dynamic leaching experiments to investigate the efficiency of this tailing under the acid mine drainage treatment. During 80 d trial period, the physical and chemical properties of influents were fixed and the effluents were monitored. After the trial, the speciation of Fe, Cu and Zn in solid was analyzed. The results showed that during the trial period, pH value maintained above 7.5. Moreover, the concentrations of Cu, Zn, Fe ions in effluents kept below 0.1, 0.4 and 1 mg·L-1, respectively. In addition, the permeability coefficient of experimental column kept decreasing during the experimental period (from 0.23 cm·s-1 to 0.10 cm·s-1). Five-step sequential extraction method was employed to study the distribution of elements at different depths. The results showed that Cu2+, Zn2+were removed mainly through sorption and precipitation. This study indicates that Tongling skarn mine tailings have strong acid neutralization as well as heavy metal binding capacities. Therefore, the authors suggest that this mine tailing, which used to be waste, has a potential in AMD control and treatment.

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