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首页> 外文期刊>Biochemical Engineering Journal >Bioconversion of acrylnitrile to acrylamide using hollow-fiber membrane bioreactor system
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Bioconversion of acrylnitrile to acrylamide using hollow-fiber membrane bioreactor system

机译:使用中空纤维膜生物反应器系统将丙烯腈生物转化为丙烯酰胺

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摘要

A poly-sulfone hollow-fiber membrane bioreactor system was designed and used in the byconversion process of acrylonitrile to acrylamide,in which a new strategy of membrane separation coupled with bioconversion was presented.The characteristics of filtration of the membrane was evaluated and the bioconversion of arcylamide from acrylnitrile in the membrane bioreactor was Carried out using the free resting cells as a biocatalyst to replace the immobilized cells in the original reacting system.The results showed that the bioconversion process continued over 5 h without renewing the cells in the system containing 10% (v/v) fermentation broth at 20 C.The conversion rate of acrylnitrile to acrylamide and the productivity of acrylamide were 99.9% and 20.67 g/gcell h,respectively,which were much higher than those of the original bioconversion system in which the immobilized cells were used as a biocatalyst.Therefore,this membrane bioreactor has a favorable foundation for industrial application due to its high efficiency and ability to continuously produce acylamide using free resting cells.
机译:设计了聚砜中空纤维膜生物反应器系统,并将其用于丙烯腈转化为丙烯酰胺的过程中,提出了一种膜分离结合生物转化的新策略。评价了膜的过滤特性,并对膜生物转化进行了研究。膜生物反应器中的丙烯腈产生的arcylamide以游离的静息细胞作为生物催化剂进行了置换,取代了原来反应体系中固定化的细胞。结果表明,生物转化过程持续了5 h,而没有更新包含10%的系统中的细胞(v / v)20°C的发酵液。丙烯腈向丙烯酰胺的转化率和丙烯酰胺的生产率分别为99.9%和20.67 g / gcell h,远高于固定化的原始生物转化系统的转化率。细胞被用作生物催化剂。因此,这种膜生物反应器具有良好的工业应用基础。由于其高效和使用自由静息细胞连续产生酰胺的能力。

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