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Assessment of nanofiltration and reverse osmosis potentialities to recover metals, sulfuric acid, and recycled water from acid gold mining effluent

机译:评估从酸性金矿开采废水中回收金属,硫酸和循环水的纳滤和反渗透潜力

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摘要

This work assessed the potential of nanofiltration (NF) and reverse osmosis (RO) to treat acid streams contaminated with metals, such as effluent from the pressure oxidation process (POX) used in refractory gold ore processing. NF and RO were evaluated in terms of rejections of sulfuric acid and metals. Regarding NF, high sulfuric acid permeation (similar to 100%), was observed, while metals were retained with high efficiencies (similar to 90%), whereas RO led to high acid rejections (<88%) when conducted in pH values higher than 1. Thus, sequential use of NF and RO was proved to be a promising treatment for sulfuric acid solutions contaminated by metals, such as POX effluent. In this context, a purified acid stream could be recovered in NF permeate, which could be further concentrated in RO. Recovered acid stream could be reused in the gold ore processing or commercialized. A metal-enriched stream could be also recovered in NF retentate and transferred to a subsequent metal recovery stage. In addition, considering the high acid rejection obtained through the proposed system, RO permeate could be used as recycling water.
机译:这项工作评估了纳滤(NF)和反渗透(RO)的潜力,以处理被金属污染的酸流,例如难处理金矿石加工中使用的压力氧化过程(POX)产生的废水。根据硫酸和金属的排斥率评估了NF和RO。关于NF,观察到高硫酸渗透率(约100%),而金属保留效率高(约90%),而RO在pH值高于200的条件下进行则导致高酸排斥率(<88%)。 1.因此,事实证明,依次使用NF和RO是一种有前景的方法,用于处理被金属(如POX废水)污染的硫酸溶液。在这种情况下,可以在NF渗透物​​中回收纯化的酸流,然后将其进一步浓缩在RO中。回收的酸流可重新用于金矿石加工或商业化。富含金属的物流也可以在NF截留液中回收,并转移到随后的金属回收阶段。另外,考虑到通过所提出的系统获得的高酸去除率,RO渗透物可以用作循环水。

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