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Reactor modeling in heterogeneous photocatalysis: Toxicity and biodegradability assessment

机译:非均相光催化反应器建模:毒性和生物降解性评估

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Photocatalysis employing titanium dioxide is a useful method to degrade a wide variety of organic and inorganic pollutants from water and air. However, the application of this advanced oxidation process at industrial scale requires the development of mathematical models to design and scale-up photocatalytic reactors. In the present work, intrinsic kinetic expressions previously obtained in a laboratory reactor are employed to predict the performance of a bench scale reactor of different configuration and operating conditions. 4-Chlorophenol was chosen as the model pollutant. The toxicity and biodegradability of the irradiated mixture in the bench photoreactor was also assessed. Good agreement was found between simulation and experimental data. The root mean square error of the estimations was 9.9%. The photocatalytic process clearly enhances the biodegradability of the reacting mixture, and the initial toxicity of the pollutant was significantly reduced by the treatment.
机译:使用二氧化钛的光催化是从水和空气中降解多种有机和无机污染物的有用方法。然而,这种先进的氧化工艺在工业规模上的应用要求开发数学模型以设计和放大光催化反应器。在本工作中,以前在实验室反应器中获得的内在动力学表达式用于预测不同构型和运行条件的台式反应器的性能。选择4-氯苯酚作为模型污染物。还评估了台式光反应器中辐照混合物的毒性和生物降解性。在模拟和实验数据之间发现了很好的一致性。估计的均方根误差为9.9%。光催化过程明显增强了反应混合物的生物降解能力,并且通过处理显着降低了污染物的初始毒性。

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