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首页> 外文期刊>ACS Omega >Kinetics of Catalytic Wet Peroxide Oxidation of Phenolics in Olive Oil Mill Wastewaters over Copper Catalysts
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Kinetics of Catalytic Wet Peroxide Oxidation of Phenolics in Olive Oil Mill Wastewaters over Copper Catalysts

机译:铜催化剂上橄榄油厂废水中酚类的催化湿式过氧化物氧化动力学。

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摘要

During olive oil extraction, large amounts of phenolics are generated in the corresponding wastewaters (up to 10 g dm–3). This makes olive oil mill wastewater toxic and conventional biological treatment challenging. The catalytic wet peroxide oxidation process can reduce toxicity without significant energy consumption. Hydrogen peroxide oxidation of phenolics present in industrial wastewaters was studied in this work over copper catalysts focusing on understanding the impact of mass transfer and establishing the reaction kinetics. A range of physicochemical methods were used for catalyst characterization. The optimal reaction conditions were identified as 353 K and atmospheric pressure, giving complete conversion of total phenols and over 50% conversion of total organic carbon content. Influence of mass transfer on the observed reaction rate and kinetics was investigated, and parameters of the advanced kinetic model and activation energies for hydrogen peroxide decomposition and polyphenol oxidation were estimated.
机译:在橄榄油提取过程中,相应的废水中会生成大量的酚类物质(最高10 g dm–3)。这使橄榄油厂的废水有毒,并且传统的生物处理方法具有挑战性。催化湿式过氧化物氧化过程可以减少毒性,而不会消耗大量能量。在这项工作中,在铜催化剂上研究了工业废水中酚类的过氧化氢氧化,其重点是了解传质的影响并建立反应动力学。一系列物理化学方法用于催化剂表征。确定了最佳反应条件为353 K和大气压,可实现总酚的完全转化和总有机碳含量的50%以上的转化。研究了传质对观察到的反应速率和动力学的影响,并估计了高级动力学模型的参数以及过氧化氢分解和多酚氧化的活化能。

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