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Pilot test of pollution control and metal resource recovery for acid mine drainage

机译:酸性矿山排水污染控制与金属资源回收试点

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The study was undertaken in order to recover the metal resources from acid mine drainage (AMD). A 300 m(3)/d continuous system was designed and fractional precipitation technology employed for the main metals Fe, Cu, Zn, and Mn recovery. The system was operated for six months using actual AMD in situ. The chemicals' input and also the retention time was optimized. Furthermore, the material balance was investigated. With the system, the heavy metals of the effluent after the Mn neutralization precipitation were below the threshold value of the Chinese integrated wastewater discharge limit. The precipitates generated contained 42%, 12%, 31%, and 18% for Fe, Cu, Zn, and Mn, respectively, and the recovery rates of Fe, Cu, Zn, and Mn were 82%, 79%, 83%, and 83%, respectively. The yield range of the precipitate had significant correlation with the influent metal content. Using the X-ray diffraction analysis, the refinement for Fe, Cu, and Zn could be achieved through the processes of roasting and floatation. Cost-benefit was also discussed; the benefit from the recycled metal was able to pay for the cost of chemical reagents used. Most important of all, through the use of this technology, the frustrating sludge problems were solved.
机译:进行这项研究是为了从酸性矿山排水(AMD)中回收金属资源。设计了一个300 m(3)/ d的连续系统,并采用分步沉淀技术回收主要金属Fe,Cu,Zn和Mn。该系统使用实际的AMD原厂运行了六个月。优化了化学品的输入以及保留时间。此外,研究了材料平衡。使用该系统,锰中和沉淀后的废水中的重金属含量低于中国综合废水排放限值的阈值。 Fe,Cu,Zn和Mn生成的沉淀物分别占42%,12%,31%和18%,Fe,Cu,Zn和Mn的回收率分别为82%,79%,83% ,和分别为83%。沉淀物的产率范围与进水金属含量显着相关。使用X射线衍射分析,可以通过焙烧和浮选过程实现对Fe,Cu和Zn的精炼。还讨论了成本效益;回收金属的收益能够支付所用化学试剂的费用。最重要的是,通过使用该技术,解决了令人沮丧的污泥问题。

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