用于提高直接氨电解中 N2 选择性的新型 Cu(200)/Ti 阴极:对铜阴极面取向的控制

IF 4.7 3区 工程技术 Q2 ELECTROCHEMISTRY
Ming-Han Tsai , Yaju Juang , Chi-Chang Hu , Shih-Hua Chen , Lap-Cuong Hua , Chihpin Huang
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引用次数: 0

摘要

使用镍铜阳极的直接电化学氨氧化反应(AOR)可有效去除废水中的氨。然而,这种阳极经常会产生不良副产物 NO。在此,我们研究了三种新型铜/钛阴极(Cu(111)/Ti、Cu(200)/Ti、Cu(220)/Ti)与铜/镍泡沫(Cu/NF)阳极的配置,以提高直接氨电解池中的氮选择性(SN)。与 Cu(111)/Ti 和 Cu(220)/Ti 相比,Cu(200)/Ti 阴极的氮选择性从 35%(裸 Ti 阴极)提高到 60%,氮选择性提高了 10-15%。在实际废水中,Cu/NF 阳极-Cu(200)/Ti 阴极配对电解系统表现出卓越的能力,NH 去除率达 88%,SN 为 95%。我们的电解系统能够将残留 NH-N 和 NO-N 维持在 8 mg L 以下,达到污水排放标准。我们的研究结果凸显了在直接氨电解过程中控制铜阴极面取向对于高效去除氮氧化物和提高氮产量的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Novel Cu(200)/Ti cathode for the enhancement of N2 selectivity in direct ammonia electrolysis: The controls of Cu cathode facet orientation

Novel Cu(200)/Ti cathode for the enhancement of N2 selectivity in direct ammonia electrolysis: The controls of Cu cathode facet orientation

Direct electrochemical ammonia oxidation reaction (AOR) using NiCu-based anodes is effective in removing ammonia from wastewater. However, this type of anode frequently produces undesired byproducts NO3. Here, we investigated three configurations of novel Cu/Ti cathodes (Cu(1 1 1)/Ti, Cu(2 0 0)/Ti, Cu(2 2 0)/Ti) coupled with Cu/Ni foam (Cu/NF) anode to enhance N2 selectivity (SN2) in a direct ammonia electrolysis cell. Cu(2 0 0)/Ti cathode improved SN2 from 35 % (bare Ti cathode) to 60 % and it achieved 10–15 % higher SN2 compared to Cu(1 1 1)/Ti and Cu(2 2 0)/Ti. The improvement of SN2 on Cu(2 0 0) facet was ascribed to the high nitrate electroreduction activity and its conversion to N2. In real wastewater, Cu/NF anode-Cu(2 0 0)/Ti cathode paired electrolysis system demonstrated its excellent capability of 88 % NH3 removal with 95 % SN2. Our electrolysis system was capable to maintain the residual NH3-N and the NO3-N below 8 mg L−1, meeting effluent discharge standards. Our findings highlighted the importance of the control of Cu cathode facet orientations for an efficient elimination of NO3 and improvement of N2 production during direct ammonia electrolysis.

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来源期刊
Electrochemistry Communications
Electrochemistry Communications 工程技术-电化学
CiteScore
8.50
自引率
3.70%
发文量
160
审稿时长
1.2 months
期刊介绍: Electrochemistry Communications is an open access journal providing fast dissemination of short communications, full communications and mini reviews covering the whole field of electrochemistry which merit urgent publication. Short communications are limited to a maximum of 20,000 characters (including spaces) while full communications and mini reviews are limited to 25,000 characters (including spaces). Supplementary information is permitted for full communications and mini reviews but not for short communications. We aim to be the fastest journal in electrochemistry for these types of papers.
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