首页> 外文期刊>Chemical engineering journal >A fundamental analysis of continuous flow bioreactor models with recycle around each reactor governed by Contois kinetics. III. Two and three reactor cascades
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A fundamental analysis of continuous flow bioreactor models with recycle around each reactor governed by Contois kinetics. III. Two and three reactor cascades

机译:连续流动生物反应器模型的基础分析,每个反应器周围的循环受Contois动力学控制。三,两个和三个反应堆级联

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摘要

The steady-state treatment of industrial wastewaters in a cascade reactor with recycle is analyzed. A number of cascades with alternative arrangements of the settling units are considered. Specifically, we consider the case when the recycle stream leaving a settling unit which is placed around a reactor goes back into the feed stream for that reactor. The Contois kinetic model is used to study the degradation of biodegradable organic materials. The steady-states for the model are found and their stability determined as a function of the total residence time in the cascade. Asymptotic solutions in the limit of large total residence time are obtained for the effluent concentration leaving a cascade. This analysis is used to determine the reactor configuration that minimizes the effluent concentration leaving the final reactor. It is found that, when settling units are deployed, the optimised reactor cascade is obtained by using perfect recycle around the final reactor and imperfect recycle around the preceding reactors. When only one settling unit is used we find the performance of the reactor cascade is optimized at short residence times by placing it around the first reactor whilst at large total residence times the performance is optimized by placing it around the final reactor. However, at sufficiently large total residence times there is a little benefit gained by using any settling units.
机译:分析了带循环的级联反应器中工业废水的稳态处理。考虑了具有级联单元的替代布置的多个级联。具体而言,我们考虑以下情况:离开放置在反应器周围的沉降单元的循环流返回该反应器的进料流。 Contois动力学模型用于研究可生物降解的有机材料的降解。找到模型的稳态,并确定其稳定性作为级联中总停留时间的函数。对于离开级联的流出物浓度,可获得总停留时间较长的渐近解。该分析用于确定使离开最终反应器的废水浓度最小的反应器配置。已经发现,当部署沉降单元时,通过使用围绕最终反应器的完美循环和围绕先前反应器的不完全循环来获得优化的反应器级联。当仅使用一个沉降单元时,我们发现通过将其放置在第一个反应器周围,可以在短停留时间内优化反应器级联的性能,而在总停留时间较长时,可以将其放置在最终反应器周围来优化性能。但是,在足够大的总停留时间下,使用任何沉降装置都不会带来什么好处。

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