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使用钯/石墨烯修饰不锈钢电极电化学还原六价铬。

Electrochemical reduction of Cr (VI) using a palladium/graphene modified stainless steel electrode.

机构信息

School of Civil Engineering and Architecture, Wuhan University of Technology, Wuhan 430070, PR China E-mail:

出版信息

Water Sci Technol. 2022 Nov;86(9):2184-2196. doi: 10.2166/wst.2022.348.

Abstract

In this study, a palladium/graphene modified stainless steel electrode was successfully prepared and applied in an electrochemical reduction device to remove Cr (VI) from the wastewater. Pd was modified onto the electrode mainly via interacting with the carboxyl group of graphene. The Cr (VI) removal efficiency was up to 99.70 ± 0.00% under the optimal condition (Pd content proportion of 3%, electrode potential of -0.9 V, pH = 2 and electrolyte concentration of 6 g/L). It was found that Cr (VI) was removed via the following processes: (1) direct electrochemical reduction by accepting electrons, (2) indirect electrochemical reduction by HO that was generated from H in the presence of Pd, (3) adsorption through hydrogen bond, and (4) chemical reduction through alkoxy groups donating electrons. The indirect electrochemical reduction considerably promoted the Cr (VI) removal while a small amount of Cr (VI) was removed via adsorption and chemical reduction. The method could not only be used as a pretreatment technology to solve the problem of excessive Cr (VI) concentration of industrial wastewater, but also could provide reference for the electrochemical reduction of similar metal ions.

摘要

在这项研究中,成功制备了钯/石墨烯修饰的不锈钢电极,并将其应用于电化学还原装置中,以去除废水中的 Cr(VI)。Pd 主要通过与石墨烯的羧基相互作用而修饰到电极上。在最佳条件下(Pd 含量比例为 3%、电极电位为-0.9 V、pH=2 和电解质浓度为 6 g/L),Cr(VI)的去除效率高达 99.70±0.00%。研究发现,Cr(VI)的去除主要通过以下过程:(1)通过接受电子进行直接电化学还原,(2)在 Pd 的存在下由 H 生成的 HO 进行间接电化学还原,(3)通过氢键进行吸附,以及(4)通过烷氧基供电子进行化学还原。间接电化学还原极大地促进了 Cr(VI)的去除,而少量的 Cr(VI)则通过吸附和化学还原去除。该方法不仅可作为预处理技术来解决工业废水中 Cr(VI)浓度过高的问题,还可为类似金属离子的电化学还原提供参考。

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