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Lumping-kinetic Modeling for Catalytic Wet Oxidation of Bipb Wastewater in a Trickle Bed Reactor

机译:Tri流床反应器中Bipb废水催化湿式氧化的集总动力学模型

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Catalytic wet oxidation (CWO) of high-strength BIPB wastewater was studied in a trickle bed reactor (TBR). Integrated into the pseudo-homogeneous-one-dimension-plug-flow model, the power-law model was built to describe the CWO process, but this model wasn't coincident with the experimental results for the industrial wastewater in TBR. Based on the lumping kinetic theory, the Langmuir-Hinshelwood-Hougen-Watson (LHHW) framework was developed and programmed by nonlinear multiparameter fitting and stochastic algorithm. It was shown to perform well in the simulation of the trends of the data from TBR and the identification of multiparameter kinetic reaction schemes. The model parameters, such as activation energy of oxidation, enthalpy of adsorption and desorption reaction etc., were calculated by linear regression analysis. The main CWO reaction pathway was extrapolated from these parameters. Furthermore, the reaction mechanism deprived of that could account for the limiting step of the mineralization of the contaminants in wastewater. The model prediction correlated the experimental results satisfactorily.
机译:在滴流床反应器(TBR)中研究了高强度BIPB废水的催化湿式氧化(CWO)。将幂律模型集成到拟均匀一维塞流模型中,以描述CWO过程,但该模型与TBR中工业废水的实验结果不一致。基于集总动力学理论,开发了Langmuir-Hinshelwood-Hougen-Watson(LHHW)框架,并通过非线性多参数拟合和随机算法进行编程。它在模拟TBR数据趋势和识别多参数动力学反应方案中表现良好。通过线性回归分析计算出模型的参数,如氧化的活化能,吸附和解吸反应的焓等。从这些参数推断出主要的CWO反应途径。此外,缺乏这种反应机理可以解释废水中污染物矿化的限制步骤。模型预测使实验结果令人满意。

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