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Arsenic removal from high-arsenic water by enhanced coagulation with ferric ions and coarse calcite

机译:通过铁离子和粗方解石的强化混凝从高砷水中去除砷

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Arsenic removal from high-arsenic water in a mine drainage system has been studied through an enhanced coagulation process with ferric ions and coarse calcite (38-74 μm) in this work. The experimental results have shown that arsenic-borne coagulates produced by coagulation with ferric ions alone were very fine, so micro-filtration (membrane as filter medium) was needed to remove the coagulates from water. In the presence of coarse calcite, small arsenic-borne coagulates coated on coarse calcite surfaces, leading the settling rate of the coagulates to considerably increase. The enhanced coagulation followed by conventional filtration (filter paper as filter medium) achieved a very high arsenic removal (over 99%) from high-arsenic water (5 mg/l arsenic concentration), producing a cleaned water with the residual arsenic concentration of 13 μg/l. It has been found that the mechanism by which coarse calcite enhanced the coagulation of high-arsenic water might be due to attractive electrical double layer interaction between small arsenic-borne coagulates and calcite particles, which leads to non-existence of a potential energy barrier between the heterogeneous particles.
机译:在这项工作中,通过增强的铁离子和粗方解石(38-74μm)混凝过程,研究了矿井排水系统中高砷水中的砷去除。实验结果表明,仅用三价铁离子凝结产生的砷传播的凝结物非常细,因此需要微滤(膜作为过滤介质)从水中除去凝结物。在存在粗方解石的情况下,覆盖在粗方解石表面的少量砷基凝结物会导致凝结物的沉降速度大大提高。增强的凝结效果,然后进行常规过滤(用滤纸作为过滤介质),可从高砷水(5 mg / l砷浓度)中非常高的砷去除率(超过99%),从而产生残留砷浓度为13的净化水微克/升已经发现,粗方解石增强高砷水凝结的机理可能是由于小的砷基凝结物与方解石颗粒之间具有吸引人的双层电相互作用,从而导致不存在潜在的势垒。异质颗粒。

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