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Removal of Copper from Acid Mine Drainage (AMD) or Acid Rock Drainage (ARD)

机译:从酸性矿山排水(AMD)或酸岩排水(ARD)中除去铜

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Acid mine drainage is wastewater from a mine having a low pH and an elevated level of dissolved heavy metals. These metals are harmful to aquatic, animal and human life. This paper looks at the removal of copper from acid mine drainage using ion exchange to less than 1 mg/l. A weak acidic cation resin was used. Spectrophotometric determination of copper with sodium diethyldithiocarbamate was used to determine the copper concentrations in the treated water. Using regression analysis, the experimental results gave a correlation coefficient of 0.977 and a coefficient of determination of 99.5%. Results indicated that the higher the flows rate the shorter the period after which the copper concentration in the treated water reaches 1 mg/l. At pH 3.85 and 5.09, the resin performed better and at pH above 6.62 and between pH 3.0 and below the resin’s does not perform well. The higher the resin height the greater is the resin exchange capacity and the longer it takes for the copper concentration to reach 1 mg/l in the treated water. The higher the wastewater copper concentration the shorter the time it takes the resin to reach 1 mg/l. The results for this experiment indicated that acid mine drainage can be treated well by ion exchange resins, but it is also very important to establish suitable operating conditions.
机译:酸性矿氨排水是来自具有低pH的矿井的废水和升高的溶解重金属水平。这些金属对水生,动物和人类生活有害。本文使用离子交换至小于1mg / L,从酸性矿井排水中查看铜的去除。使用弱酸性阳离子树脂。用二乙基二硫代氨基甲酸氢酸钠的分光光度法测定铜中的铜浓度确定处理过的水中。使用回归分析,实验结果得到了0.977的相关系数,测定系数为99.5%。结果表明,流量率越高,处理水中铜浓度达到1mg / L的时间越短。在pH 3.85和5.09,树脂更好,在6.62高于6.62,在pH 3.0和下方之间进行树脂的表现不佳。树脂高度越高,树脂交换能力越大,铜浓度在处理的水中达到1mg / L的时间越长。废水铜浓度越高,树脂达到1毫克/升的时间越短。该实验的结果表明,可以通过离子交换树脂良好处理酸性矿井排水,但建立合适的操作条件也是非常重要的。

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