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碳酸钙主导的赤泥对水相铜、锌和镉的竞争去除。

Competitive removal of water-borne copper, zinc and cadmium by a CaCO3-dominated red mud.

机构信息

College of Resources and Environment, South China Agricultural University, Guangzhou 510642, China.

出版信息

J Hazard Mater. 2009 Dec 30;172(2-3):1288-96. doi: 10.1016/j.jhazmat.2009.07.135. Epub 2009 Aug 8.

Abstract

Batch experiments were conducted to investigate the competitive removal of water-borne Cu, Zn and Cd by a CaCO(3)-dominated red mud. The results show that the water-borne Cu had a higher affinity to the red mud, as compared to the water-borne Zn and Cd. The major mechanism responsible for the preferential retention of Cu by red mud was the formation of atacamite. It is likely that, initially, atacamite was formed mainly through the reaction between CuCl(2) and NaOH. Reaction between CuCl(2) and CaCO(3) to form atacamite became more and more important with the gradual consumption of NaOH. Sequential extraction results show that the water-borne metals were preferentially associated with the NH(2)OH.HCl-extractable fractions at the early stage of the experiment. With increase in the saturation degree of binding sites on red mud particles by the metals, the proportion of HCH(3)COO-extractable Cu fraction increased accordingly. Water-borne Zn and Cd were also increasingly bound in the HCH(3)COO-extractable forms until the metal binding capacity of the red mud was nearly depleted. After the binding sites of red mud particles were saturated, part of the Zn and Cd previously retained by the red mud was displaced by water-borne Cu, resulting in the release of the previously immobilized Zn and Cd to the solution.

摘要

进行了批实验,以研究碳酸钙占主导地位的赤泥对水载 Cu、Zn 和 Cd 的竞争去除作用。结果表明,与水载 Zn 和 Cd 相比,水载 Cu 对赤泥具有更高的亲和力。赤泥优先保留 Cu 的主要机制是形成氯铜矿。最初,氯铜矿可能主要通过 CuCl2 和 NaOH 之间的反应形成。随着 NaOH 的逐渐消耗,CuCl2 和 CaCO3 之间形成氯铜矿的反应变得越来越重要。连续提取结果表明,在实验的早期阶段,水载金属优先与 NH2OH.HCl 可提取分数相关联。随着金属在赤泥颗粒上结合位点的饱和度增加,相应地增加了 HCH3COO-可提取 Cu 分数的比例。水载 Zn 和 Cd 也越来越多地以 HCH3COO-可提取的形式被束缚,直到赤泥的金属结合容量几乎耗尽。在赤泥颗粒的结合位点饱和后,先前被赤泥保留的部分 Zn 和 Cd 被水载 Cu 取代,导致先前固定的 Zn 和 Cd 释放到溶液中。

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