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Electrodeposited NiCu bimetal on carbon paper as stable non-noble anode for efficient electrooxidation of ammonia

机译:碳纸上电沉积NiCu双金属作为稳定的非贵金属阳极,可有效地氨化电氧化

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摘要

Electrochemical remediation of ammonia-containing wastewater at low cell voltage is an energy-effective technology which can simultaneously recover energy via hydrogen evolution reaction. One of the main challenges is to identify a robust, highly active and inexpensive anode for ammonia electrooxidation. Here we present an alternative anode, prepared by electrochemical co-deposition of Ni and Cu onto carbon paper. This NiCu bimetallic catalyst is characterised by scanning electron microscope, scanning transmission electron microscope, X-ray diffraction, x-ray photoelelectron spectroscopy, cyclic voltammetry, linear sweep voltammetry and chronoamperometry techniques. The stability and activity of NiCu bimetallic catalyst are largely improved in comparison with Ni or Cu catalyst. Moreover this noble-metal-free NiCu catalyst even performs better than Pt/C catalyst, as NiCu is not poisoned by ammonia. An ammonia electrolysis cell is fabricated with NiCu/carbon paper as anode for ammonia electrolysis. The influences of pH value, applied cell voltages and initial ammonia concentration on cell current density, ammonia removal and energy efficiency are tested. An ammonia removal efficiency of ∼80% and coulombic efficiency up to ∼92% have been achieved. Ni-Cu bimetal on carbon paper is a stable non-noble anode for efficient electrooxidation of ammonia.
机译:低电池电压下含氨废水的电化学修复是一种节能技术,可通过析氢反应同时回收能量。主要挑战之一是确定一种坚固,高活性且廉价的氨电氧化阳极。在这里,我们提出了一种替代阳极,它是通过将Ni和Cu电化学共沉积到碳纸上制备的。该NiCu双金属催化剂的特征在于扫描电子显微镜,扫描透射电子显微镜,X射线衍射,X射线光电子能谱,循环伏安法,线性扫描伏安法和计时电流法技术。与Ni或Cu催化剂相比,NiCu双金属催化剂的稳定性和活性大大提高。此外,这种无贵金属的NiCu催化剂的性能甚至优于Pt / C催化剂,因为NiCu不会被氨中毒。以NiCu /碳纸为阳极电解制得氨电解槽。测试了pH值,施加的电池电压和初始氨浓度对电池电流密度,氨去除和能量效率的影响。已实现约80%的除氨效率和高达92%的库仑效率。碳纸上的Ni-Cu双金属是稳定的非贵金属阳极,可有效地进行氨的电氧化。

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