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首页> 外文期刊>Chemical Engineering and Processing >Process intensification with a hybrid system: A tubular packed bed bioreactor with immobilized activated sludge culture coupled with membrane filtration
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Process intensification with a hybrid system: A tubular packed bed bioreactor with immobilized activated sludge culture coupled with membrane filtration

机译:混合系统强化工艺:管状固定床生物反应器,具有固定化的活性污泥培养和膜过滤

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Performance of a hybrid system consisting of a tubular bioreactor and a membrane filter was studied for removing carbohydrate and protein. Microporous polyurethane (sponge) was used as the packing medium for immobilization activated sludge culture. The bioreactor was operated in series with a cross flow ultrafiltration system to study the effect of influent flow rate and chemical oxygen demand (COD) concentration on the overall system performance. The removal efficiency in the bioreactor decreased linearly with increase in loading. The decline of removal efficiency at higher loadings was more significant for protein than carbohydrate. Coupling the bioreactor with a membrane separation process increased the overall removal rates and provided a consistent effluent quality. The flux through ultrafiltration membrane did not change significantly even when the bioreactor effluent had high levels of protein. Morphological examination of the packing medium both visually and by SEM showed significant accumulation of organisms on the surface which indicates that biofilm thickness was controlled by diffusion limitations. Advantages of the hybrid system include small footprint, economical packing medium, and space savings by coupling the bioreactor with a membrane filtration process.
机译:研究了由管状生物反应器和膜过滤器组成的混合系统去除碳水化合物和蛋白质的性能。使用微孔聚氨酯(海绵)作为固定化活性污泥培养的包装介质。该生物反应器与错流超滤系统串联运行,以研究进水流速和化学需氧量(COD)浓度对整体系统性能的影响。生物反应器中的去除效率随着负载的增加而线性下降。与碳水化合物相比,蛋白质在高负荷下去除效率的下降更为显着。将生物反应器与膜分离工艺耦合,可提高整体去除率,并提供稳定的出水质量。即使生物反应器流出物中的蛋白质含量很高,通过超滤膜的流量也不会发生明显变化。目视和通过SEM对包装介质的形态学检查均显示表面上生物的大量积累,这表明生物膜的厚度受扩散限制的控制。混合系统的优点包括占地面积小,经济的包装介质,以及通过将生物反应器与膜过滤过程结合在一起而节省的空间。

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