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首页> 外文期刊>Separation and Purification Technology >Impact of intermediate concentrate softening on feed water recovery of reverse osmosis process during treatment of mining contaminated groundwater
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Impact of intermediate concentrate softening on feed water recovery of reverse osmosis process during treatment of mining contaminated groundwater

机译:中间精矿软化处理采矿污染地下水时反渗透过程给水回收的影响

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摘要

Mining facilities have an ongoing groundwater pollution issue resulting from the seepage of the mine's tailing facility, waste dumps and natural conditions. Given the complicated water quality issues and the need to maximize the volume of extracted groundwater for re-injection into the aquifer, a study was performed to evaluate the application of reverse osmosis (RO) for contaminated groundwater treatment. Due to high concentrations of calcium and silica in the contaminated groundwater, the feed water recovery of the RO process was restricted to less than 60%. To enhance feed water recovery, a primary RO followed by intermediate concentrate treatment and a secondary RO process was evaluated. For intermediate concentrate treatment, electrocoagulation was compared to chemical softening. Chemical softening and electrocoagulation were both effective in reducing the concentration of calcium and silica by more than 90% in the primary RO concentrate. Electrocoagulation was more efficient than chemical softening in the removal of metals, specifically mercury and selenium. With intermediate treatment of the primary RO concentrate in combination with a secondary RO process, up to 90% overall feed water recovery was achievable. The approach presented in this study can be utilized for efficient treatment of contaminated groundwater at industrial facilities with minimal concentrate discharge.
机译:由于矿山尾矿库的渗漏,垃圾场和自然条件的影响,采矿设施一直存在地下水污染问题。鉴于复杂的水质问题以及需要最大化抽取的地下水量以将其重新注入含水层的问题,进行了一项研究,以评估反渗透(RO)在受污染的地下水处理中的应用。由于受污染的地下水中钙和二氧化硅的浓度很高,因此反渗透工艺的给水回收率被限制在60%以下。为了提高给水的回收率,对初次RO,中间精矿处理和二次RO工艺进行了评估。对于中间浓缩物处理,将电凝与化学软化进行了比较。化学软化和电凝均能有效地将一级RO浓缩物中的钙和二氧化硅浓度降低90%以上。在去除金属特别是汞和硒方面,电凝比化学软化更有效。通过对一级反渗透浓缩液进行中间处理并与二级反渗透工艺相结合,可以实现高达90%的总给水回收率。本研究中介绍的方法可用于以最小的浓缩物排放量对工业设施中的地下水进行有效处理。

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