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首页> 外文期刊>Biochemical Engineering Journal >6-Aminopenicillanic acid production in stationary basket bioreactor with packed bed of immobilized penicillin amidase—Penicillin G mass transfer and consumption rate under internal diffusion limitation
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6-Aminopenicillanic acid production in stationary basket bioreactor with packed bed of immobilized penicillin amidase—Penicillin G mass transfer and consumption rate under internal diffusion limitation

机译:固定化青霉素酰胺酶固定床固定篮式生物反应器中6-氨基戊酸的生产—内部扩散限制下青霉素G的传质和消耗速率

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摘要

The external and internal mass transfers of Penicillin G in the process of its enzymatic hydrolysis to 6-Aminopenicillanic acid under competitive and non-competitive inhibitions using a bioreactor with stationary basket bed of immobilized penicillin amidase have been analyzed. By means of the Penicillin G mass balance for a single particle of biocatalysts, considering the specific kinetic model proposed by Warburton et al., mathematical expressions have been developed for describing the profiles of Penicillin G concentrations and mass flows in the outer and inner regions of biocatalyst particles, as well as for estimating the influence of internal diffusion on its hydrolysis rate. The results indicated that very low values of internal mass flow could be reached in the particles centre. The corresponding region was considered an "enzymatic inactive region", its extent varying from 0 to 51 % from the overall volume of each biocatalyst. By enzyme immobilization and using the basket bed, the rate of enzymatic reaction is reduced over 160 times compared to the process with free enzyme
机译:分析了青霉素G在竞争性和非竞争性抑制下,使用固定化青霉素酰胺酶固定篮床生物反应器在竞争性和非竞争性抑制下将青霉素G酶解为6-氨基戊酸的过程中的内部和外部质量转移。考虑到Warburton等人提出的特定动力学模型,利用单个生物催化剂颗粒的青霉素G质量平衡,开发了数学表达式来描述青霉素G浓度和质量流量在外部和内部区域的分布。生物催化剂颗粒,以及估计内部扩散对其水解速率的影响。结果表明,在颗粒中心可以达到非常低的内部质量流量值。相应的区域被认为是“酶非活性区域”,其程度相对于每种生物催化剂的总体积为0至51%。通过酶固定和使用篮床,与使用游离酶的过程相比,酶促反应的速率降低了160倍以上

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