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Why and How Membrane Bioreactors with Unsteady Filtration Conditions Can Improve the Efficiency of Biological Processes

机译:为什么和膜生物反应器具有不稳定过滤条件的生物反应器可以提高生物过程的效率

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A membrane bioreactor (MBR), an association of a bioreactor with a crossflow filtration unit, enables continuous processes with total cell retention within the reactor to be realized. Provided that high dilution rates can be applied and that inhibition processes are avoided, very high bioniass concentrations can be reached, thereby improving the volumetric productivities. These membrane bioreactors have been successfully applied to various microbial bioconversion, such as alcoholic fermentation, solvents, organic acid production, starters, and wastewater treatment. On the basis of the biological reaction characteristics and bibliographic results, the potentialities and bottlenecks of this methodology are discussed. Depending on the application, it is shown how the performance of the membrane bioreactor can be enhanced by acting either on the biological reaction achievement, by controlling the balance between cell growth and death, or on the dilution rate, by increasing the permeate flux through the filtration unit. This discussion is based on results obtained in specific biological treatments applied to polluted liquid and gas.
机译:膜生物反应器(MBR),具有交叉流过滤单元的生物反应器的缔合物,使得能够实现在反应器内的总电池保持的连续过程。如果可以应用高稀释率并且避免抑制过程,可以达到非常高的均质浓度,从而改善体积的生产率。这些膜生物反应器已成功地应用于各种微生物生物转化,如酒精发酵,溶剂,有机酸的生产,起动器,以及废水处理。在生物反应特征和书目结果的基础上,讨论了该方法的潜在性和瓶颈。根据应用,通过在生物反应成果上通过控制细胞生长和死亡的平衡或稀释率来提高渗透通量通过增加渗透通量来提高膜生物反应器的性能是如何通过作用于生物反应成果来提高膜生物反应器的性能。通过增加渗透物通量过滤单元。该讨论基于在适用于污染的液体和气体的特定生物处理中获得的结果。

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