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首页> 外文期刊>International journal of the Society of Material Engineering for Resources >Oxygen Evolution Overpotential of Pb-based Insoluble Anode Containing Ru Oxide Powders Prepared by Liquid-phase Reaction and Heating
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Oxygen Evolution Overpotential of Pb-based Insoluble Anode Containing Ru Oxide Powders Prepared by Liquid-phase Reaction and Heating

机译:通过液相反应制备的Ra氧化物粉末的Pb基不溶性阳极的氧气进化超稳定性

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摘要

Ruthenium oxide powders were produced by the reaction of an RuCl_(3) solution with H_(2)O_(2), followed by heating of the resulting precursor at a temperature between 200°C and 600°C in air. Pb-based anodes containing these heated products of 1.0 mass% were prepared by the powder-rolling method, and the effect of the heated product as an electrode catalyst on lowering the anode potential was investigated in order to develop an energy-saving insoluble anode for Zn electrowinning. Based on XPS results, RuO_(2) with a signifi cant amount of RuO_(2)?n H_(2)O was produced by heating the precursor at 250°C or lower. The ratio of RuO_(2) to RuO_(2)?n H_(2)O increased remarkably above 300°C and the potential of the Pb-based anode decreased in inverse proportion to the RuO_(2) content of the heated product. The lowest anode potential of 1.72 V vs. NHE, which was about 360 mV lower than that of the anode with the unheated precursor, was observed for the Pb-based anode containing the product heated at 400°C. However, the anode potential of the Pb-based anode increased again when the heating temperature was 500°C or higher. The subsequent increase in the anode potential was probably caused by a decrease in the active sites of the oxygen evolution reaction, that is, the grain growth of the heated product decreased the effective reaction area of the RuO_(2) catalyst.
机译:通过RuCl_(3)溶液用H_(2)O_(2)的反应产生氧化钌粉末,然后在空气中加热所得的前体在200℃和600℃的温度下加热。通过粉末轧制方法制备含有1.0质量%的加热产物的Pb基阳极,并研究了加热产品作为降低阳极电位的电极催化剂的效果,以开发节能的不溶性阳极Zn Electrowinning。基于XPS结果,RuO_(2)具有ruo_(2)的标志不能的ru_(2)? n H_(2)O是通过在250℃或更低的250℃或更低的情况下加热前体来制备的。 Ruo_(2)与Ruo_(2)的比率显着增加到300°C以上显着增加,并且基于PB的阳极的电位以与Ruo_(2)的含量相反比例地减小加热产品。对于在400℃加热的产品中,观察到含有未加热前体的阳极低的最低阳极电位。然而,当加热温度为500℃或更高时,Pb的阳极的阳极电位再次增加。随后的阳极电位的增加可能是由于氧进化反应的活性位点的减少而导致的,即加热产物的晶粒生长降低了Ru_(2)催化剂的有效反应面积。

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