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Degradation of methyl orange waste water by electrochemical oxidation method

机译:电化学氧化法降解甲基橙废水

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Degradation of methyl orange (MO) waste water was conducted by electrochemical oxidation method with PbO2/Ti electrode as anode. PbO2/Ti electrode was fabricated by electrochemical deposition of PbO2 on Ti foil. The micrograph and crystal structure of PbO2 show that uniform coating of PbO2 on titanium foil was obtained and the dominant crystal structure was -PbO2. Degradation experiments of MO solution indicate that the degradation rate increased with cell voltage and solution conductivity. In addition, air aeration also improved the degradation of MO solution; but an increase in cell voltage or input energy decreased the energy efficiency of MO removal. The energy efficiency reached over 0.1mg kJ1 under a cell voltage lower than 15V, and the removal rate could reach 90.
机译:以PbO2/Ti电极为阳极,采用电化学氧化法对甲基橙(MO)废水进行降解。PbO2/Ti电极是将PbO2电化学沉积在Ti箔上制备的。PbO2的显微照片和晶体结构表明,PbO2均匀涂覆在钛箔上,主要晶体结构为-PbO2。MO溶液的降解实验表明,降解速率随电池电压和溶液电导率的增加而增加。此外,空气曝气还改善了MO溶液的降解;但电池电压或输入能量的增加降低了MO去除的能源效率。在低于15V的电池电压下,能效达到0.1mg kJ1以上,去除率可达90%。

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    College of Resources and Materials, Northeastern University at Qinhuangdao, Qinhuangdao, People's Republic of China;

    Institute of Metallurgical Resources & Environmental Engineering, Key Metallurgical Resource Recycling Science Laboratory of Liaoning Province, Northeastern University, Shenyang, People's Republic of China;

    Beijing Institute of Technology, Beijing, People's Republic of ChinaTo whom any correspondence should be addressed;

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