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首页> 外文期刊>Chemical and Biochemical Engineering Quarterly >Photocatalytic Oxidation of Azo Dyes and Oxalic Acid in Batch Reactors and CSTR: Introduction of Photon Absorption by Dyes to Kinetic Models
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Photocatalytic Oxidation of Azo Dyes and Oxalic Acid in Batch Reactors and CSTR: Introduction of Photon Absorption by Dyes to Kinetic Models

机译:偶氮染料和批量反应器和CSTR的光催化氧化和CSTR:染料引入动力学模型的光子吸收

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摘要

The possibilities of treating industrial effluents and water purification by advanced oxidation processes have been extensively studied; photocatalysis has emerged as a feasible alternative solution. In order to apply the photocatalytic treatment on a larger scale, relevant modeling approaches are necessary. The scope of this work was to investigate the applicability of recently published kinetic models in different reactor systems (batch and CSTR) under UVA or UVC irradiation and in combination with two types of TiO2 catalyst, AEROXIDE (R) P25 and PC-500 for degradation of azo dyes (C.I. Reactive Violet 2, and C.I. Mordant Yellow 10), oxalic acid and their mixtures. The influences of reactor geometry and irradiation intensities on pollutant oxidation efficiency were examined. The effect of photon absorption by dyes in water matrix was thoroughly studied. Relevant kinetic models were introduced to the mass balance for particular reactor system. Resulting models were sufficient for description of pollutant degradation in batch reactors and CSTR. Experimental results showed 1.15 times higher mineralization extents achieved after 7 cycles in CSTR than in batch photoreactor of similar geometry within the equivalent time-span. The application of CSTR in-series could simplify the photocatalytic water treatment on a larger scale.
机译:采用先进的氧化过程处理工业污水和水净化的可能性已经过度研究;光催化出现为可行的替代方案。为了将光催化处理较大,需要相关的建模方法。这项工作的范围是在UVA或UVC辐射下调查最近公布的动力学模型在UVA或UVC照射下的不同反应器系统(批量和CSTR),并与两种类型的TiO 2催化剂,氧氧化物(R)P25和PC-500组合进行降解偶氮染料(CI反应性紫丁2,CI媒染黄10),草酸及其混合物。检查了反应器几何形状和辐照强度对污染物氧化效率的影响。研究了光子染料在水基质中的光子吸收的影响。将相关的动力学模型引入特定反应器系统的质量平衡。所产生的模型足以描述批量反应器和CSTR的污染物降解。实验结果表明,在CSTR中的7个循环后达到了1.15倍的矿化率,而不是在等效时间跨度的类似几何形状的批量光反应器。 CSTR in系列的应用可以简化更大尺度的光催化水处理。

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