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首页> 外文期刊>Hydrometallurgy >Electrochemical characteristics of Co3O4-doped beta-PbO2 composite anodes used in long-period zinc electrowinning
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Electrochemical characteristics of Co3O4-doped beta-PbO2 composite anodes used in long-period zinc electrowinning

机译:长期锌电荷中使用Co3O4掺杂β-PbO2复合阳极的电化学特性

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摘要

In this study, a new anode based on Pb-0.3%Ag/alpha-PbO2/beta-PbO2-Co3O4 composite is proposed and its performance is compared with that of the traditional Pb-1wt%Ag anode during long-term zinc electrowinning. The electrocatalytic activity of the new anode for the oxygen evolution reaction (OER) initially decreased and then gradually increased, which was attributed to the phase transition occurring at the surface of the anode, and its corrosion resistance was gradually improved with the progress of electrowinning. Further, the electrochemical characteristics, cell voltage, current efficiency, and energy consumption of the two anodes were evaluated after 16 days of electrowinning. The OER electrocatalytic activity and corrosion resistance of the new anode were observed to be higher than those of the traditional anode. In addition, the cell voltage and power consumption of the new anode were significantly lower than those of the traditional anode. Furthermore, compared to the traditional anode, the energy consumption for producing 1 t of zinc was reduced by 358.13 kWh based on the new anode.
机译:在该研究中,提出了一种基于PB-0.3%Ag /α-PBO2 /β-PBO2-CO 3 O 4复合材料的新阳极,并将其性能与传统的PB-1wt%Ag阳极相比,在长期锌电荷期间。用于氧气进化反应(oer)的新阳极的电催化活性最初降低,然后逐渐增加,归因于在阳极表面发生的相转变,随着电滤网的进展逐渐改善其耐腐蚀性。此外,在电涤除16天后评估两个阳极的电化学特性,电池电压,电流效率和能量消耗。观察到新阳极的oer电催化活性和耐腐蚀性高于传统阳极。此外,新阳极的电池电压和功耗显着低于传统阳极的电池电压和功耗。此外,与传统的阳极相比,基于新阳极的358.13kwh产生1吨锌的能量消耗。

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