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Treatment of acid mine drainage by forward osmosis: Heavy metal rejection and reverse flux of draw solution constituents

机译:渗透渗透性渗透性渗透性渗透性渗透性溶液组分的重金属抑制与逆转通量

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Acid mine drainage (AMD) is one of the most relevant potential environmental liabilities of mining activities. They are formed when the excavated ore is exposed to rain and other natural erosion factors. This research evaluated the application of forward osmosis (FO) for the treatment of AMD. Rejection of several metals was determined, using a thin-film composite FO membrane, and two types of draw solutions: NaCl and NH4HCO3. When using NaCl as draw solution, results showed high levels of rejection, exceeding 97%. Individual rejections were Mg: 98.9%, Al: 99.8%, Si: 97.1%, Ca: 99.3%, Mn: 99.6%, Fe: 100%, Co: 99.4%, Cu: 98.9%, Zn: 99.5%. When using NH4HCO3 as draw solute, precipitates were observed over membrane surface, preventing normal operation. Results show that transport of ions from draw solution (Ammonia and bicarbonate) is the cause of such phenomenon. FO has the potential to become an alternative for the treatment of AMD, based on the high levels of rejection for metals provided by FO membranes. However, attention must be paid to the reverse flux of ions from the draw solution to the feed, especially when they can react with feed solutes.
机译:酸性矿山排水(AMD)是采矿活动最相关的环境负债之一。当挖掘矿石暴露于雨水和其他自然侵蚀因素时,它们是形成的。该研究评估了向前渗透(FO)治疗AMD的应用。使用薄膜复合FO膜测定几种金属的排斥,以及两种类型的绘制溶液:NaCl和NH 4 HCO3。使用NaCl作为绘制溶液时,结果显示出高度抑制,超过97%。单个抑制率为Mg:98.9%,Al:99.8%,Si:97.1%:97.1%:99.3%,Mn:99.6%,Fe:100%,Co:99.4%,Cu:98.9%,Zn:99.5%。当使用NH4HCO3作为拉伸溶质时,在膜表面上观察沉淀物,防止正常操作。结果表明,来自绘制溶液(氨和碳酸氢盐)离子的运输是这种现象的原因。由于FO膜提供的金属的高水平排斥,FO有可能成为治疗AMD的替代方案。然而,必须注意将离子的逆转通量从拉伸溶液转移到进料,尤其是当它们可以与饲料溶质反应时。

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