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Electrochemical Degradation of Benzoquinone in a Flow through Cell with Carbon Fibers

机译:碳纤维在流通池中对苯醌的电化学降解

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The anodic degradation of benzoquinone(BQ),a model compound for wastewater treatment was carried out using a home-made flow-through electrochemical cell with carbon fibers.To optimize the controlled current electrolysis condition of an aqueous BQ solution,the experimental variables affecting the degradation of BQ,such as the applying current,pH,reaction time,and flow rate of the BQ solution were examined.The degradation products of the oxidation reaction were identified by High Performance Liquid Chromatography and Inductively Coupled Plasma Atomic Emission Spectrometer.Low molecular weight aliphatic acids,and CO2 were the major products in this experiment.The removal efficiency of BQ from the solution increased with the applying current and time.99.23% of 1.0 x 10~(-2) M BQ was degraded to aliphatic acids and CO2 when the applying current is 175 mA in a 12 hr electrolysis.
机译:使用自制的碳纤维流通式电化学电池对用于废水处理的模型化合物苯醌(BQ)进行阳极降解。为优化BQ水溶液的控制电流电解条件,实验变量影响了检查了BQ的降解情况,如施加电流,pH,反应时间和BQ溶液的流速。通过高效液相色谱和电感耦合等离子体原子发射光谱仪鉴定了氧化反应的降解产物。低分子量该实验的主要产物是脂肪族酸和CO 2。溶液中BQ的去除效率随施加电流和时间的增加而增加。当1.0 x 10〜(-2)M BQ分解时,99.23%分解为脂肪族酸和CO 2。在12小时的电解中,施加电流为175 mA。

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