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Electrochemical degradation of neutral red on PbO2/alpha-Al2O3 composite electrodes: Electrode characterization, byproducts and degradation mechanism

机译:中性红色在PBO2 /α-AL2O3复合电极上的电化学降解:电极表征,副产品和降解机制

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摘要

PbO2/alpha-Al2O3 composite electrodes were successfully synthesized using composite electrodeposition technology and applied for the electrocatalytic degradation of neutral red (NR). The effect of alpha-Al2O3 particles on the surface morphology, structure, stability and electrochemical properties of PbO2/alpha-Al2O3 composite electrodes were characterized. The results showed that the incorporation of alpha-Al2O3 particles can fine the crystal size of lead dioxide and form compact film structure. PbO2/alpha-Al2O3 composite electrodes exhibited larger electrochemical active surface area, stronger hydroxyl radical generation ability and longer service lifetime than PbO2 electrodes. Electrochemical oxidization experiments showed that PbO2/alpha-Al2O3 composite electrodes had the higher neutral red and COD removal efficiency, lower energy consumption and minimum Pb dissolution than PbO2 electrodes. Finally, hypothetical electrocatalytic degradation pathway of neutral red on PbO2/alpha-Al2O3 composite electrode was proposed, which was dominated by hydroxyl radical mediated oxidization reaction. Under reaction with hydroxyl radicals, neutral red was gradually de-functionalized and hydroxylized to form n-delocalization shrink byproducts, which were transformed to multiple organic acids and then to inorganic substances H2O and CO2 ultimately.
机译:使用复合电沉积技术成功合成PBO2 / alpha-Al2O3复合电极,并施加了中性红色(NR)的电催化降解。特征在于,α-Al2O3颗粒对PBO2 /α-Al2O3复合电极表面形态,结构,稳定性和电化学性能的影响。结果表明,α-Al2O3颗粒的掺入可以细细的二氧化铅的晶体尺寸,形成紧凑的膜结构。 PBO2 / alpha-Al2O3复合电极显示出较大的电化学活性表面积,羟基激进的产生能力较强,使用寿命较长而不是PbO2电极。电化学氧化实验表明,PBO2 /α-AL2O3复合电极具有较高的中性红色和COD去除效率,降低能量消耗和比PbO2电极的最小Pb溶解。最后,提出了中性红色在PBO 2 /α-Al2O3复合电极上的假设电催化降解途径,其由羟基自由基介导的氧化反应支配。在与羟基自由基的反应下,中性红色逐渐脱官能化和羟基化以形成N-临床化收缩副产物,其转化为多个有机酸,然后转化为无机物质H2O和CO2最终。

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