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Integration of two-stage nanofiltration with arsenic and calcium intermediate chemical precipitation for gold mining effluent treatment

机译:两级纳滤与砷和钙中间化学沉淀相结合,用于金矿废水处理

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摘要

The aim of this study was to evaluate an innovative treatment route for gold-mining effluents rich in calcium, arsenic, and sulfate. This treatment route comprised two nanofiltration (NF) stages and a two-step intermediate precipitation. Arsenic and iron coprecipitation (first step) and calcium carbonate precipitation (second step) were assessed aiming to treat the first-stage NF concentrate and increase the permeate recovery rate in a second-stage NF. The pH, the molar ratio of Fe/As (first step), and the molar ratio of CO3/Ca (second step) were optimized by using rotational central composite design. Under optimal conditions, the arsenic removal was 99.8% (at pH = 7.0 and Fe/As = 4.0), and the calcium removal was 99.5% (at pH 11.5 and CO3/Ca = 3.5). The supernatant of Ca precipitation had very basic pH and had to be acidified before the second-stage NF. The pH 8.5 proved to be the best one regarding retention efficiency and flux. The flux decay of the second-stage NF was attributed to both osmotic pressure increase and reversible fouling resistance. It was concluded that the proposed treatment system is efficient for the treatment of gold-mining wastewater, ensuring higher production of treated effluent and an easy disposable of the final concentrate.
机译:这项研究的目的是评估富含钙,砷和硫酸盐的金矿废水的创新处理方法。该处理路线包括两个纳滤(NF)阶段和两步中间沉淀。评估了砷和铁的共沉淀(第一步)和碳酸钙沉淀(第二步),目的是处理第一阶段的NF浓缩物并提高第二阶段NF的渗透物回收率。通过使用旋转中心复合材料设计优化了pH,Fe / As的摩尔比(第一步)和CO3 / Ca的摩尔比(第二步)。在最佳条件下,砷的去除率为99.8%(在pH = 7.0且Fe / As = 4.0时),钙的去除率为99.5%(在pH为11.5且CO3 / Ca = 3.5时)。 Ca沉淀的上清液具有非常碱性的pH,并且必须在第二阶段NF之前被酸化。就保留效率和通量而言,pH 8.5被证明是最好的。第二阶段NF的通量衰减归因于渗透压的增加和可逆的抗污性。结论是,所提出的处理系统对于处理金矿废水是有效的,可确保更高的处理废水产量,并易于处理最终精矿。

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