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Kinetic modeling of granular activated carbon promoted ozonation of a food-processing secondary effluent

机译:颗粒活性炭促进食品加工二次废水臭氧化的动力学模型

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A mathematical model has been developed and applied to simulate the behavior of a chemical reactor for the ozonation of a food-processing secondary wastewater effluent in the presence of granular activated carbon (GAC). The reactor configuration comprises two compartments in series: a bubble column for gas (ozone)-liquid (wastewater) contact and a fixed bed column for solid (catalyst)-liquid (wastewater) reaction. Second order kinetics for both direct ozonation and heterogeneous catalytic ozonation has been considered in the kinetic approach. After rate constants determination, the kinetic model was validated by comparing simulated and experimental results at different operating conditions. The mathematical model accurately predicted experimental data and the influence of the studied operating variables in the ozone dose range 0-4g O3/g TOC. However, the model failed to predict experimental results when applying higher ozone doses, probably due to the changing nature of the oxidation state of the water matrix.
机译:已经开发了数学模型并将其应用于模拟化学反应器的行为,该化学反应器用于在存在颗粒活性炭(GAC)的情况下臭氧处理食品加工二级废水。反应器配置包括两个串联的隔室:用于气体(臭氧)-液体(废水)接触的鼓泡塔和用于固体(催化剂)-液体(废水)反应的固定床塔。在动力学方法中已经考虑了直接臭氧化和非均相催化臭氧化的二阶动力学。确定速率常数后,通过比较不同操作条件下的模拟和实验结果验证动力学模型。该数学模型可以准确预测实验数据以及所研究的工作变量在臭氧剂量范围0-4g O3 / g TOC中的影响。但是,该模型无法预测使用较高臭氧剂量时的实验结果,这可能是由于水基质氧化态的变化所致。

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