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采用镁、铟和锌合金元素激活的铝阳极进行电化学凝固。

Electrocoagulation using aluminium anodes activated with Mg, In and Zn alloying elements.

机构信息

Department of Chemistry, Maynooth University, Maynooth, County Kildare, Ireland.

Department of Chemistry, Maynooth University, Maynooth, County Kildare, Ireland.

出版信息

J Hazard Mater. 2019 Mar 15;366:39-45. doi: 10.1016/j.jhazmat.2018.11.094. Epub 2018 Nov 24.

Abstract

The simultaneous removal of phosphates, Zn and Orange II, in two synthetic wastewaters was achieved using Al-Mg and Al-Zn-In alloys as anodes at 11.7 mA cm and a surface area to volume ratio of 19.0 m. Higher removal efficiencies were obtained with Al-Zn-In, attaining values of 95-96% for phosphate, 99% for Zn and 88-96% for Orange II, while somewhat lower values were seen with Al-Mg, with 89-93% for phosphate, 96% for Zn and 50-60% for Orange II, depending on the solution. The higher efficiency with Al-Zn-In was attributed to its less passive behaviour, which was evident from polarisation plots. Numerous shallow pits, resembling general-like dissolution, were seen with Al-Zn-In, while fewer and larger pits were observed with Al-Mg. The energy demand for the removal of the pollutants was computed as 1.30 and 2.55 kWh m for the Al-Zn-In and Al-Mg anodes, respectively. The removal of phosphates and Orange II was explained in terms of the generation of cationic polynuclear aluminium species that provide electrostatic interactions with the anionic phosphates and Orange II. The removal of Zn was attributed to the formation of insoluble Zn(OH).

摘要

在 11.7 mA cm 和表面积与体积比为 19.0 m 的条件下,使用 Al-Mg 和 Al-Zn-In 合金作为阳极,同时从两种合成废水中去除磷酸盐、Zn 和橙色 II。Al-Zn-In 的去除效率更高,磷酸盐的去除率达到 95-96%,Zn 的去除率达到 99%,橙色 II 的去除率达到 88-96%,而 Al-Mg 的去除率稍低,磷酸盐的去除率为 89-93%,Zn 的去除率为 96%,橙色 II 的去除率为 50-60%,具体取决于溶液。Al-Zn-In 的效率更高,这归因于其非钝化行为,这从极化图中可以明显看出。Al-Zn-In 表面有许多类似一般溶解的浅层凹坑,而 Al-Mg 表面的凹坑则较少且较大。对于 Al-Zn-In 和 Al-Mg 阳极,去除污染物的能量需求分别计算为 1.30 和 2.55 kWh m。磷酸盐和橙色 II 的去除是由于生成带正电荷的多核铝物种,这些物种与阴离子磷酸盐和橙色 II 提供静电相互作用。Zn 的去除归因于形成不溶性 Zn(OH)。

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