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首页> 外文期刊>International Journal of Electrochemical Science >Electro-catalytic Reduction of Aqueous Nitrates using Cu-Sn and Cu-Pd Cathodes
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Electro-catalytic Reduction of Aqueous Nitrates using Cu-Sn and Cu-Pd Cathodes

机译:使用Cu-Sn和Cu-Pd阴极电催化还原硝酸盐水溶液

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摘要

Water treatment systems are used globally to reduce environmental impacts or to provide potable water,thus fulfilling established water quality standards. Electrocatalytic nitrate removal is a promising tool toaddress upcoming problems related to nitrate contamination. This study compares the employment of alow cost CuSn6 based catalyst with a noble metal Cu - Pd catalyst in a laboratory and a continuouslyoperating pilot apparatus to treat nitrate contaminated water from a well. In contrast with commonapplications, a saturated carbonic acid was used as the anolyte solution, which stabilized the pH in theanode compartment as well as in the cathode compartment. The best performance, as determined bynitrate removal and nitrogen transfer into the gas phase, was reached with a specific current of 1.16 Am-2 for the laboratory apparatus and 1.53 A m-2 for the pilot plant apparatus. However, other parameterssuch as pH (influenced by anolyte solution) and catalyst selection also had an impact on the nitratereduction performance with the consequence that process optimization should be realized on-site whilerunning a pilot plant. Process gas analysis by mass spectroscopy revealed the presence of hydrogen,which suggests that a combination of the system with heterogeneous catalysts should be used foradditional nitrogen reduction at potential free surfaces.
机译:水处理系统在全球范围内使用,以减少环境影响或提供饮用水,从而实现既定的水质标准。电催化硝酸盐去除是一个有前途的工具,即将到来与硝酸盐污染有关的问题。该研究将储层成本Cusn6的催化剂在实验室中的贵金属Cu - Pd催化剂中的用途比较,并在实验室和连续运转的先导装置中从井中处理硝酸盐污染的水。与公平持久性相比,使用饱和碳酸作为阳极电解液溶液,其稳定在Theanodo池中以及阴极室中的pH。与测定的伯硝酸盐去除和氮气转移到气相中的最佳性能,对于实验室设备的1.16AM-2的比电流达到1.53A M-2。然而,作为pH的其他参数(受Anolyte Solution的影响)和催化剂选择也对嵌入式性能产生影响,结果优化应在现场实现飞行员植物。通过质谱进行处理气体分析揭示了氢的存在,这表明该系统的组合应该在潜在的自由表面下使用脱氮。

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