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Development of dissolved air flotation for mining wastewaters purification

机译:溶解空气浮选技术在矿山废水净化中的应用

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摘要

Modern mining uses vast amounts of water for the recovery of valuable metals. As the associated costs associated to fresh water price and wastewater treatment continue to increase, there has been a prolonged interest in reusing the mine effluents for the extraction processes. However, wastewater reclamation is challenging as many of the pollutants in the effluents decrease the efficiency of the recovery. Moreover, the huge volume of the effluents greatly reduces the number of suitable purification processes.The present study tested the feasibility of using dissolved air flotation (DAF) for removing one of the most common pollutants in mining wastewaters: xanthates. The removal capability was evaluated using a general statistical factorial experiment design over two sets of jar tests. The experiments evaluated xanthate reduction with pH, flocculant type, and origin of wastewater (process water and thickener overflows from two different flotation circuits) as independent variables. The best performing conditions were scaled up and further examined using DAF over of settling.Results demonstrate that it is possible to remove xanthate from the effluents of the thickener overflow using DAF, with average reductions of approximately 50%. It was also observed that the source of wastewater has the largest impact on the process and exhibits an important interaction with the type of flocculant. Overall, DAF has the potential to increase water recirculation in mining operations.
机译:现代采矿使用大量的水来回收贵重金属。随着与淡水价格和废水处理相关的成本不断增加,人们对将矿山废水用于提取过程的兴趣日益浓厚。但是,废水回收面临挑战,因为废水中的许多污染物都会降低回收效率。此外,大量的废水极大地减少了合适的净化过程的数量。本研究测试了使用溶解气浮法(DAF)去除采矿废水中最常见的污染物之一:黄药的可行性。使用通用统计析因实验设计对两组震击试验进行评估,以评估去除能力。实验评估了以pH值,絮凝剂类型和废水来源(来自两个不同浮选回路的工艺水和增稠剂溢流)作为自变量的黄药还原率。扩大了最佳性能条件,并在沉降过程中使用DAF进行了进一步检查。结果表明,使用DAF可以从增稠剂溢流的废水中去除黄药,平均减少约50%。还观察到废水的来源对工艺有最大的影响,并且与絮凝剂的类型表现出重要的相互作用。总体而言,DAF有潜力增加采矿作业中的水再循环。

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    Cadena Moreno Nicolas;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en
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