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首页> 外文期刊>Journal of Applied Electrochemistry >Cathodes for chlorate electrolysis with nanocrystalline Ti-Ru-Fe-O catalyst
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Cathodes for chlorate electrolysis with nanocrystalline Ti-Ru-Fe-O catalyst

机译:纳米晶Ti-Ru-Fe-O催化剂用于氯酸盐电解的阴极

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Cathodes for chlorate electrolysis were prepared by mixing nanocrystalline Ti-Ru-Fe-O catalyst powder with small amounts of Teflon and subsequent hot pressing on a carbon-Teflon sublayer. Initially, the electrode materials were characterized by SEM, EDX, XRD and BET measurements. The behaviour of electrodes with catalyst loadings from 300 mg cm(-2) reduced to 10 mg cm(-2) was investigated in chlorate electrolyte with pH 6.5 and in part, for comparison, in 1 M sodium hydroxide solution at 70 degrees C. Several methods have been used: cyclic voltammetry for the determination of double layer capacitance, Tafel plot analysis, cathodic potentiodynamic polarization and potentiostatic tests at i = -250 mA cm(-2). The as-milled catalyst powder electrodes showed a high activity for the HER in chlorate electrolyte particularly expressed in low overpotentials of about 580 mV at -250 mA cm(-2) for catalyst loadings down to 20 mg cm(-2) and high double layer capacitances in the freshly prepared state. These electrodes show increased activity at low polarization. The long-term stability during electrolysis was also analysed. [References: 16]
机译:通过将纳米晶Ti-Ru-Fe-O催化剂粉末与少量的Teflon混合,然后在碳-Teflon子层上热压来制备用于氯酸盐电解的阴极。最初,电极材料通过SEM,EDX,XRD和BET测量进行表征。在pH值为6.5的氯酸盐电解液中研究了催化剂负载从300 mg cm(-2)降低到10 mg cm(-2)的电极的行为,部分情况是在70°C的1 M氢氧化钠溶液中进行比较的。已经使用了几种方法:循环伏安法用于确定双层电容,Tafel图分析,阴极电势极化和i = -250 mA cm(-2)时的恒电位测试。研磨后的催化剂粉末电极在氯酸盐电解质中显示出对HER的高活性,尤其表现为在-250 mA cm(-2)时约580 mV的低过电势,催化剂负载低至20 mg cm(-2)和高双倍刚准备好的状态下的层电容。这些电极在低极化下显示出增加的活性。还分析了电解过程中的长期稳定性。 [参考:16]

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