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Simultaneous Saccharification and Fermentation of Sugar Beet Pulp with Mixed Bacterial Cultures for Lactic Acid and Propylene Glycol Production

机译:混合细菌培养的甜菜浆同时糖化和发酵生产乳酸和丙二醇

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摘要

Research into fermentative production of lactic acid from agricultural by-products has recently concentrated on the direct conversion of biomass, whereby pure sugars are replaced with inexpensive feedstock in the process of lactic acid production. In our studies, for the first time, the source of carbon used is sugar beet pulp, generated as a by-product of industrial sugar production. In this paper, we focus on the simultaneous saccharification of lignocellulosic biomass and fermentation of lactic acid, using mixed cultures with complementary assimilation profiles. Lactic acid is one of the primary platform chemicals, and can be used to synthesize a wide variety of useful products, including green propylene glycol. A series of controlled batch fermentations was conducted under various conditions, including pretreatment with enzymatic hydrolysis. Inoculation was performed in two sequential stages, to avoid carbon catabolite repression. Biologically-synthesized lactic acid was catalytically reduced to propylene glycol over 5% Ru/C. The highest lactic acid yield was obtained with mixed cultures. The yield of propylene glycol from the biological lactic acid was similar to that obtained with a water solution of pure lactic acid. Our results show that simultaneous saccharification and fermentation enables generation of lactic acid, suitable for further chemical transformations, from agricultural residues.
机译:从农业副产物发酵生产乳酸的研究最近集中在生物质的直接转化上,从而在乳酸生产过程中用便宜的原料代替了纯糖。在我们的研究中,第一次使用的碳源是甜菜浆,它是工业制糖生产的副产品。在本文中,我们重点研究木质纤维素生物质的同时糖化和乳酸发酵,使用具有互补同化特​​征的混合培养物。乳酸是主要的平台化学品之一,可用于合成多种有用的产品,包括绿色丙二醇。在各种条件下进行了一系列受控的分批发酵,包括用酶水解的预处理。为避免碳分解代谢物阻抑,接种分两个连续阶段进行。在5%Ru / C下,将生物合成的乳酸催化还原为丙二醇。混合培养获得最高的乳酸产量。来自生物乳酸的丙二醇的产率类似于用纯乳酸水溶液获得的丙二醇的产率。我们的结果表明,同时进行糖化和发酵可以从农业残留物中产生适合进一步化学转化的乳酸。

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