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Modeling ozone mass transfer with combined effects of ozone decomposition and reaction with pollutants in a bubble column

机译:结合臭氧分解和气泡塔中污染物的反应,对臭氧传质进行建模

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This paper analyzes the countercurrent single-stage bubble column reactor (BCR) for gas-liquid ozonation systems. The effects of system variables on ozonation performance are examined. The aspects of ozonation performance considered include the efficiency of ozone utilization, the efficiency of pollutant removal, and the emission concentration of ozone gas. This analysis takes into account the effects of ozone decomposition and the ozonation of pollutants on the ozone mass transfer (i. e., enhancement factror, E-r), the variation of pressure (P) and of gas velocity (U-G) along the column, and dispersion effects (Pe(G), Pe(L)). The obtained detailed single-stage BCR model may be used in further development of multi-stage BCR model in the future. The results of this study can provide useful information for rational design of a BCR ozonation contactor, and are important with respect to the treatment of pollutants via ozonation. For the simplified case without ozonation of pollutants, this analysis reduces to that of Huang et al. (1998). [References: 27]
机译:本文分析了用于气液臭氧化系统的逆流单级鼓泡塔反应器(BCR)。检查了系统变量对臭氧化性能的影响。所考虑的臭氧化性能的方面包括臭氧利用效率,污染物去除效率和臭氧气体的排放浓度。该分析考虑了臭氧分解和污染物的臭氧化对臭氧传质(即增强因子Er),沿色谱柱的压力(P)和气体速度(UG)的变化以及分散效应的影响。 (Pe(G),Pe(L))。所获得的详细的单级BCR模型可以在将来进一步开发多级BCR模型中使用。这项研究的结果可以为合理设计BCR臭氧氧化接触器提供有用的信息,并且对于通过臭氧氧化处理污染物非常重要。对于没有污染物臭氧氧化的简化情况,该分析简化为Huang等人的分析。 (1998)。 [参考:27]

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