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Valorization of Waste Glycerol to Dihydroxyacetone with Biocatalysts Obtained from Gluconobacter oxydans

机译:废甘油对二羟基丙酮的储存与葡萄糖杆菌获得的生物催化剂

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摘要

Waste glycerol is the main by-product generated during biodiesel production, in an amount reaching up to 10% of the produced biofuel. Is there any method which allows changing this waste into industrial valuable compounds? This manuscript describes a method for valorization of crude glycerol via microbial bioconversion. It has been shown that the use of free and immobilized biocatalysts obtained from Gluconobacter oxydans can enable beneficial valorization of crude glycerol to industrially valuable dihydroxyacetone. The highest concentration of this compound, reaching over 20 g·L−1, was obtained after 72 h of biotransformation with free G. oxydans cells, in a medium containing 30 or 50 g·L−1 of waste glycerol. Using a free cell extract resulted in higher concentrations of dihydroxyacetone and a higher valorization efficiency (up to 98%) compared to the reaction with an immobilized cell extract. Increasing waste glycerol concentration to 50 g·L−1 causes neither a faster nor higher increase in product yield and reaction efficiency compared to its initial concentration of 30 g·L−1. The proposed method could be an alternative for utilization of a petrochemical waste into industry applicated chemicals.
机译:废甘油是生物柴油生产过程中产生的主要副产物,其数量达到生产的生物燃料的10%。是否有任何方法,可以使这种废物改变为工业有价值的化合物?该稿件描述了通过微生物生物转化的粗甘油算法的方法。已经表明,使用从葡糖二氧化碳获得的自由和固定化生物催化剂可以使粗甘油的有益储度在工业上有价值的二羟基丙酮。在与游离G. oxydans细胞的生物转化的72小时,在含有30或50g·L-1的废甘油的培养基中,获得该化合物的最高浓度。与与固定细胞提取物的反应相比,使用自由细胞提取物具有更高浓度的二羟基丙酮和较高的储度效率(高达98%)。与其初始浓度为30g·L-1相比,将废甘油浓度升高至50g·L-1的浓度既没有更快,也不会提高产物产量和反应效率。该方法可以是利用石化废物进入工业应用的替代方案。

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