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首页> 外文期刊>International Journal of Electrochemical Science >Hydrogen Production Using Electrodeposited Ni and Ni/Co on Carbon Paper as Cathode Catalyst in Microbial Electrolysis Cells
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Hydrogen Production Using Electrodeposited Ni and Ni/Co on Carbon Paper as Cathode Catalyst in Microbial Electrolysis Cells

机译:碳纸上电沉积Ni和Ni / Co作为阴极催化剂在微生物电解槽中制氢

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Microbial electrolysis cells (MECs) utilize microorganisms to decompose organic matter in wastewaterand produce hydrogen at the cathode. Thus, a low-cost and highly active cathode material is of greatimportant in such system. In this study, electrodeposited Ni, Co, and Ni/Co on carbon paper (CP) wereprepared as cathode to replace platinum. At an applied voltage of 0.7 V, the Ni MEC cathode producedmost gas of 11.40 mL at current density of 15.31 A m?2, which was 73.24% higher than that of bare CPelectrode (3.05 mL). Linear sweep voltammetry and Cyclic voltammetry measurements showed thatthe hydrogen evolution performance of the Ni cathode was significantly better than Co and Ni/Cocathodes. The tafel plots proved that the hydrogen evolution overpotential of Ni cathode (59.89 mVdecade?) was lower than that of bare CP electrode (99.22 mV decade?). Owing to the improved currentdensity, hydrogen recovery rate and low hydrogen evolution overpotential, the developedelectrodeposited Ni on CP materials possessed much higher catalytic activity than bare CP. Thus,electrodeposited Ni on CP are promising electrocatalysts for hydrogen evolution reaction and low-costcathode materials in MECs.
机译:微生物电解池(MEC)利用微生物分解废水中的有机物并在阴极产生氢。因此,在这种系统中,低成本和高活性的阴极材料非常重要。在这项研究中,准备了在碳纸(CP)上电沉积的Ni,Co和Ni / Co作为阴极代替铂。在0.7 V的施加电压下,Ni MEC阴极在电流密度为15.31 A m?2时产生的气体为11.40 mL,比裸露的CP电极(3.05 mL)高73.24%。线性扫描伏安法和循环伏安法测量表明,Ni阴极的析氢性能明显优于Co和Ni /阴极。拖曳图证明镍阴极的氢气放出超电势(59.89 mVdecade?)低于裸CP电极(99.22 mV十倍?)。由于电流密度的提高,氢的回收率高和氢析出的超低电势,已开发的电沉积Ni在CP材料上的催化活性远高于裸CP。因此,在CP上电沉积Ni是用于MECs中氢析出反应和低成本阴极材料的有前途的电催化剂。

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