首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Electrodialytic bioproduction of xylonic acid in a bioreactor of supplied-oxygen intensification by using immobilized whole-cell Gluconobacter oxydans as biocatalyst
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Electrodialytic bioproduction of xylonic acid in a bioreactor of supplied-oxygen intensification by using immobilized whole-cell Gluconobacter oxydans as biocatalyst

机译:通过使用固定的全细胞葡糖杆菌作为生物催化剂,通过固定的全细胞葡糖杆菌的供应氧气强化中的二聚体反应器中的电渗酸电渗量

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摘要

Immobilized whole-cell fermentation has been proven to be an effective method to improve the performance and cost-effectiveness of Gluconobacter oxydans ATCC 621. In the bio-oxidation of xylose to xylonic acid, the oxygen supply through the immobilized beads is a well-known factor that limits the biocatalytic performance of Gluconobacter oxydans as obligate aerobic bacteria. The activity of immobilized cells could be efficiently improved by execution of pressurized pure oxygen supply strategy. Subsequently, in order to further enhance the production efficiency of xylonic acid and reduce end-product inhibition, online-electrodialysis was employed. Finally, a design of pressurized oxygen supply bioreactor combining with online-electrodialysis was put forward for implementing successive production of xylonic acid. The central features of this a highly integrated design are feasible and thus might enable cost-competitive bacterial xylonic acid production.
机译:已被证明的固定化的全细胞发酵是一种有效的方法,以提高葡萄糖菌ATCC 621的性能和成本效果。在木糖对木糖酸的生物氧化中,通过固定的珠子的氧气供应是众所周知的 限制葡萄糖杆菌的生物催化表现为葡萄糖细菌的因素。 通过执行加压纯氧供给策略,可以有效地改善固定细胞的活性。 随后,为了进一步提高二甲酸的生产效率,降低最终产物抑制,采用在线电渗析。 最后,提出了与在线电渗透组合的加压氧气供应生物反应器的设计,用于实施连续生产的木糖酸。 这种高度集成的设计的中心特征是可行的,因此可能能够实现成本竞争性的细菌酸性酸生产。

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