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Catalytic wet air oxidation of pentachlorophenol over Ru/ZrCb and Ru/ZrSiO2 catalysts

机译:Ru / ZrCb和Ru / ZrSiO2催化剂上五氯苯酚的湿式催化氧化

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摘要

ZrSiO2 and ZrO2 supports loaded with active component Ru were unprecedentedly evaluated in catalytic wet air oxidation reaction of pentachlorophenol (PCP). The study results showed that the specific surface area of ZrSiO2 which was prepared by high temperature aging method was much larger than that of ZrO2, and it performed a better catalytic activity in catalytic wet air oxidation after being loaded with Ru. When the initial concentration of PCP was 125 mgL~(-1), PCP conversion reached 92% after 90min under the low temperature and pressure conditions of 180癈 and 0.1 MPa oxygen partial pressure. PCP conversion was increased by raising reaction temperature, increasing oxygen partial pressure, reducing the initial concentration of PCP and prolonging reaction time. The kinetics study of PCP in catalytic wet air oxidation showed that the catalytic wet air oxidation reaction of PCP obeyed first order kinetic model and its Arrhenius activation energy was 96.98 k] mol~(-1). The main intermediates of PCP in CWAO were acetic acid, oxalic acid and chlorine ion.
机译:负载活性成分Ru的ZrSiO2和ZrO2载体在五氯苯酚(PCP)的催化湿空气氧化反应中得到了前所未有的评估。研究结果表明,采用高温时效法制备的ZrSiO2比表面积比ZrO2大得多,负载Ru后对湿法氧化具有更好的催化活性。当PCP的初始浓度为125 mgL〜(-1)时,在180癈和0.1 MPa氧分压的低温和高压条件下90分钟后PCP转化率达到92%。通过提高反应温度,增加氧气分压,降低PCP的初始浓度和延长反应时间来提高PCP转化率。五氯苯酚在湿式催化氧化中的动力学研究表明,五氯苯酚的催化湿式氧化反应服从一级动力学模型,其阿累尼乌斯活化能为96.98 k] mol〜(-1)。 CWAO中五氯苯酚的主要中间体是乙酸,草酸和氯离子。

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