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Adsorptive bioconversion of ethylene glycol to glycolic acid by Gluconobacter oxydans DSM 2003

机译:氧化葡糖杆菌DSM 2003将乙二醇吸附生物转化为乙醇酸

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摘要

An integrated bioprocess for the production of glycolic acid from ethylene glycol with Gluconobacter oxydans DSM 2003 and in situ product removal were investigated. A slight substrate inhibition was observed as substrate concentration was above 20g/l and the product inhibition was much stronger. Bioconversion of glycolic acid is an end-product-inhibited reaction. In order to increase the productivity of glycolic acid and reduce the end-product inhibition of bioconversion, an adsorptive bioconversion for glycolic acid production from ethylene glycol catalyzed by resting cells of G. oxydans DSM 2003, was developed by using anion exchange resin D315 as the adsorbent for selective removal of glycolic acid from the reaction mixture. This approach allowed the yield of glycolic acid to be increased to 93.2 g/1, compared to 74.5 g/1 obtained from a conventional fed-batch mode.
机译:研究了用氧化葡糖杆菌DSM 2003从乙二醇生产乙醇酸的综合生物工艺,并现场去除了产品。当底物浓度高于20g / l时,观察到轻微的底物抑制作用,并且产物抑制作用更强。乙醇酸的生物转化是终产物抑制反应。为了提高乙醇酸的生产率并减少对生物转化的终产物抑制作用,采用阴离子交换树脂D315作为脱氧核糖核酸(D315)的吸附剂,开发了一种吸附性生物转化方法,用于由环氧乙烷G. oxydans DSM 2003催化乙二醇生产乙醇酸。吸附剂,用于从反应混合物中选择性去除乙醇酸。与从常规补料分批模式获得的74.5 g / 1相比,此方法可使乙醇酸的产量提高到93.2 g / 1。

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