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首页> 外文期刊>Electrochemistry communications >Effective degradation of carbamazepine using a novel electro-peroxone process involving simultaneous electrochemical generation of ozone and hydrogen peroxide
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Effective degradation of carbamazepine using a novel electro-peroxone process involving simultaneous electrochemical generation of ozone and hydrogen peroxide

机译:利用新型电氧化锆工艺有效降解Carbamazepine,涉及同时电化学产生臭氧和过氧化氢的电化学产生

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AbstractAn advanced electrochemical oxidation process (electro-peroxone) involving a dual electrode system was developed to degrade recalcitrant carbamazepine (CBZ). During this electro-peroxone (E-peroxone) process, ozone was electrochemically produced by anodic oxidation of water in a membrane electrode assembly (MEA) cell and H2O2was simultaneously generated by the sparged O2using a carbon-polytetrafluorethylene (C-PTFE) cathode. The O3and H2O2electrogenerated in situ synergistically produce hydroxyl radicals (OH), which are much more easily oxidized than O3. As a result, the removal efficiencies of CBZ and its TOC reached 99.8% and 97.6% after 15min and 90min of E-peroxone treatment, respectively, these figures remaining stable after multiple tests. The E-peroxone process is therefore a promising and effective method for degrading ozone-refractory organic contaminants in wastewater.Graphical abstractDisplay OmittedHighlights
机译:<![cdata [ 抽象 开发了涉及双电极系统的先进电化学氧化过程(电氧化锆)以降解氯吡啶族核毒素(CBZ )。在该电氧化锆(E-氧化锆)过程中,通过在膜电极组件(MEA)细胞(MEA)细胞中的水和H 2 O. 2 通过施工o 2 使用碳 - 聚四氟乙烯(C-PTFE )阴极。 O 3> 3 和H 2 O 2 原位电流协同产生羟基自由基(OH),比O 3 更容易氧化。结果,CBZ及其TOC的去除效率分别在15分钟和90分钟内达到99.8%和97.6%,分别在e-氧化锆处理中,这些数字在多次试验后保持稳定。因此,E-氧化氢化物过程是一种有效和有效的废水中臭氧耐火有机污染物的有效方法。 图形抽象 显示省略 突出显示

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