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Effects of Anodic Potential and Chloride Ion on Overall Reactivity in Electrochemical Reactors Designed for Solar-Powered Wastewater Treatment

机译:阳极电位和氯离子对设计用于太阳能废水处理的电化学反应器中总反应性的影响

摘要

We have investigated electrochemical treatment of real domestic wastewater coupled with simultaneous production of molecular H2 as useful byproduct. The electrolysis cells employ multilayer semiconductor anodes with electroactive bismuth-doped TiO_2 functionalities and stainless steel cathodes. DC-powered laboratory-scale electrolysis experiments were performed under static anodic potentials (+2.2 or +3.0 V NHE) using domestic wastewater samples, with added chloride ion in variable concentrations. Greater than 95% reductions in chemical oxygen demand (COD) and ammonium ion were achieved within 6 h. In addition, we experimentally determined a decreasing overall reactivity of reactive chlorine species toward COD with an increasing chloride ion concentration under chlorine radicals (Cl·, Cl2–·) generation at +3.0 V NHE. The current efficiency for COD removal was 12% with the lowest specific energy consumption of 96 kWh kgCOD–1 at the cell voltage of near 4 V in 50 mM chloride. The current efficiency and energy efficiency for H2 generation were calculated to range from 34 to 84% and 14 to 26%, respectively. The hydrogen comprised 35 to 60% by volume of evolved gases. The efficacy of our electrolysis cell was further demonstrated by a 20 L prototype reactor totally powered by a photovoltaic (PV) panel, which was shown to eliminate COD and total coliform bacteria in less than 4 h of treatment.
机译:我们研究了实际生活废水的电化学处理方法,同时生产了有用的副产物分子H2。电解池采用具有电活性铋掺杂的TiO_2功能的多层半导体阳极和不锈钢阴极。直流供电的实验室规模的电解实验是在静态阳极电位(+2.2或+3.0 V NHE)下使用生活废水样品进行的,并添加了浓度可变的氯离子。在6小时内,化学需氧量(COD)和铵离子的减少量超过95%。此外,我们通过实验确定了在+3.0 V NHE下生成氯自由基(Cl·,Cl2-·)时,氯离子对COD的总体反应活性随氯离子浓度的增加而降低。在50 mM氯化物中,当电池电压接近4 V时,目前的COD去除效率为12%,单位能耗最低,为96 kWh kgCOD-1。计算出的H2产生的电流效率和能量效率分别为34%至84%和14%至26%。氢气占排出气体体积的35%至60%。我们的电解池的功效通过完全由光伏(PV)面板供电的20 L原型反应器得到了进一步证明,该反应器显示在不到4小时的处理中即可消除COD和总大肠菌群。

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