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Lactic acid production from lime-treated wheat straw by Bacillus coagulans: neutralization of acid by fed-batch addition of alkaline substrate

机译:凝结芽孢杆菌从石灰处理过的小麦秸秆中生产乳酸:通过分批分批加入碱性底物来中和酸

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摘要

Conventional processes for lignocellulose-to-organic acid conversion requires pretreatment, enzymatic hydrolysis, and microbial fermentation. In this study, lime-treated wheat straw was hydrolyzed and fermented simultaneously to lactic acid by an enzyme preparation and Bacillus coagulans DSM 2314. Decrease in pH because of lactic acid formation was partially adjusted by automatic addition of the alkaline substrate. After 55 h of incubation, the polymeric glucan, xylan, and arabinan present in the lime-treated straw were hydrolyzed for 55%, 75%, and 80%, respectively. Lactic acid (40.7 g/l) indicated a fermentation efficiency of 81% and a chiral l(+)-lactic acid purity of 97.2%. In total, 711 g lactic acid was produced out of 2,706 g lime-treated straw, representing 43% of the overall theoretical maximum yield. Approximately half of the lactic acid produced was neutralized by fed-batch feeding of lime-treated straw, whereas the remaining half was neutralized during the batch phase with a Ca(OH)2 suspension. Of the lime added during the pretreatment of straw, 61% was used for the neutralization of lactic acid. This is the first demonstration of a process having a combined alkaline pretreatment of lignocellulosic biomass and pH control in fermentation resulting in a significant saving of lime consumption and avoiding the necessity to recycle lime.
机译:用于木质纤维素到有机酸转化的常规方法需要预处理,酶水解和微生物发酵。在这项研究中,通过酶制剂和凝结芽孢杆菌DSM 2314将石灰处理过的麦草水解并同时发酵为乳酸。由于乳酸的形成,pH的降低可通过自动添加碱性底物来部分调节。孵育55小时后,将石灰处理过的秸秆中存在的聚合葡聚糖,木聚糖和阿拉伯聚糖分别水解55%,75%和80%。乳酸(40.7 g / l)表明发酵效率为81%,手性l(+)-乳酸纯度为97.2%。从2706克石灰处理过的秸秆中总共产生711克乳酸,占理论最大总产量的43%。通过石灰处理的秸秆的分批补料进料,所产生的乳酸约有一半被中和,而其余的一半在分批阶段用Ca(OH)2悬浮液被中和。在秸秆预处理过程中添加的石灰中,有61%用于中和乳酸。这是对木质纤维素生物质进行碱性预处理和控制发酵中pH值相结合的方法的首次演示,从而显着节省了石灰消耗量,并避免了循环石灰的必要性。

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