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首页> 外文期刊>Journal of Applied Electrochemistry >Anodically deposited manganese molybdenum tungsten oxide anodes for oxygen evolution in seawater electrolysis
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Anodically deposited manganese molybdenum tungsten oxide anodes for oxygen evolution in seawater electrolysis

机译:阳极沉积锰钼钨氧化物阳极,用于海水电解中的氧气释放

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Ternary manganese molybdenum tungsten oxides were anodically deposited on to IrO2-coated titanium substrates at current densities of 60-600 A m(-2) in 0.4 M MnSO4 solutions containing 0.003 M Na2MoO4 and 0.003 M Na2WO4 at pH 0-1.5 and at 30-90degreesC. The effect of anodic deposition conditions on the activity, selectivity and durability of the anodes for oxygen evolution in 0.5 M NaCl solution was investigated. Most of the oxide anodes prepared initially gave an oxygen evolution efficiency of almost 100%. When the anodic deposition was performed at temperatures lower than 90degreesC gradual oxidative dissolution occurred during the electrolysis in the NaCl solution, due to formation of poorly crystalline oxides. In contrast, the oxide deposited at 90 degreesC revealed no obvious dissolution during electrolysis for more than 1500 h. The oxygen evolution efficiency, however, decreased gradually with time of electrolysis because of partial detachment of the deposited oxide. The anodic deposition in electrolytes at lower pH and at higher current density resulted in the formation of oxides with better adhesion to the substrate, resulting in improved anode durability. The durability was further improved by repeated anodic deposition with the oxide surface washed during intervals. [References: 9]
机译:在0.4M MnSO4溶液中,电流密度为60-600 A m(-2),在pH 0-1.5和30-30时在0.00-1.5 M Na2MoO4和0.003 M Na2WO4中将三价锰钼钨氧化物阳极沉积到IrO2涂层的钛基底上。 90摄氏度研究了阳极沉积条件对0.5M NaCl溶液中析氧阳极活性,选择性和耐久性的影响。最初制备的大多数氧化物阳极的氧气逸出效率几乎为100%。当在低于90摄氏度的温度下进行阳极沉积时,由于形成的结晶性差的氧化物,在NaCl溶液中电解过程中会发生逐渐的氧化溶解。相反,在90℃下沉积的氧化物在超过1500小时的电解过程中没有发现明显的溶解。然而,由于沉积的氧化物的部分脱离,氧的释放效率随着电解时间而逐渐降低。在较低的pH和较高的电流密度下在电解液中进行阳极沉积会导致形成氧化物,并与基材具有更好的附着力,从而提高了阳极的耐久性。通过在间隔期间清洗氧化物表面的重复阳极沉积,进一步提高了耐久性。 [参考:9]

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