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Kinetics and thermodynamics of photocatalytic degradation of organic pollutants in petroleum refinery wastewater over nano-TiO2 supported on Fe-ZSM-5

机译:Fe-ZSM-5负载纳米TiO2光催化降解炼油废水中有机污染物的动力学和热力学

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The photocatalytic degradation of organic pollutants in a real petroleum refinery wastewater (PRWW) by a heterogeneous photocatalytic process using synthesized nano-TiO2 supported on Fe-ZSM-5 zeolite as photocatalyst irradiated with UV light has been studied. The influence of various operational parameters such as photocatalyst concentration, pH and temperature was investigated. The degradation rates of the organic pollutants followed mainly a pseudo-first order kinetic model. Results showed that the maximum photodegradation efficiency was achieved at a photocatalyst concentration of 3 g/l, pH of 4 and temperature of 45 degrees C under UV irradiation time of 120 min. TiO2 loaded with the existence of oxo-iron ions in the framework of zeolite increased photocatalytic degradation of COD. The kinetics of photodegradation reaction was accelerated by an increase in temperature in the range of 15-45 degrees C. The activation energy for photocatalytic degradation of organic pollutants in PRWW was 18.76 kJ/mol. Thermodynamic parameters of activation were assessed in the photodegradation process. Kinetics computation using transition state theory (TST) showed that the temperature had a significant effect on the rate constants during the photocatalytic degradation process. Significant photodegradation efficiency of organic pollutants using the synthesized photocatalyst indicates a good potential for this technique as a treatment system for real PRWW. (C) 2016 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:研究了以Fe-ZSM-5分子筛为载体的合成纳米TiO2为光催化剂,采用紫外光辐照,通过非均相光催化工艺对石油炼制废水(PRWW)中的有机污染物进行了光催化降解。研究了各种操作参数(例如光催化剂浓度,pH和温度)的影响。有机污染物的降解速率主要遵循伪一级动力学模型。结果表明,在120分钟的紫外线照射时间下,在3 g / l的光催化剂浓度,4的pH和45摄氏度的温度下,可以获得最大的光降解效率。沸石骨架中负载有氧-铁离子的TiO2增加了COD的光催化降解。温度在15-45摄氏度范围内升高,可加速光降解反应的动力学。PRWW中有机污染物的光催化降解活化能为18.76 kJ / mol。在光降解过程中评估了活化的热力学参数。使用过渡态理论(TST)进行的动力学计算表明,温度对光催化降解过程中的速率常数有显着影响。使用合成的光催化剂,有机污染物的显着光降解效率表明该技术作为实际PRWW处理系统的良好潜力。 (C)2016台湾化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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