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Microwave processes: A viable technology for obtaining xylose from walnut shell to produce lactic acid by Bacillus coagulans

机译:微波工艺:一种可行的技术,用于从核桃壳中获得木糖以通过凝结芽孢杆菌产生乳酸

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摘要

Biorefining uses alternative resources (such as biomass) instead of petrochemical sources to produce bioenergy and platform chemicals. Walnut shell is a promising lignocellulosic biomass for the production of fermentable carbohydrates. In this study, the platform chemical L-(+) lactic acid was produced after walnut shell had been treated with physicochemical and biological processes. So biomass waste can be regenerated to the benefit of the circular bio-economy. Autohydrolysis assisted by microwave processes was used to depolymerize hemicellulose and amorphous cellulose in walnut shell to yield 63.5% w/w of xylose in a liquid fraction (hydrolysate) with a minimum yield of glucose. The optimum reaction conditions to obtain a high xylose yield with a low byproduct titer were 190 degrees C for 25 min. L-(+) lactic acid was produced by thermophilic Bacillus coagulans DSM 2314 with a carbon source of xylose and glucose which were solubilized in hydrolysate from autohydrolyzed walnut shell. A non-sterile and straightforward fermentation medium coupled with a pH adjustment of the crude hydrolysate in an anaerobic environment led to a L- (+) lactic acid yield of 81% w/w with a productivity of 0.2 g/L/h. (C) 2019 Elsevier Ltd. All rights reserved.
机译:生物精炼使用替代资源(例如生物质)代替石化资源来生产生物能源和平台化学品。核桃壳是一种有前途的木质纤维素生物质,可用于生产可发酵的碳水化合物。在这项研究中,平台壳的L-(+)乳酸是在核桃壳经过理化和生物学过程处理后产生的。因此,可以将生物质废物进行再生,以利用循环生物经济。使用微波工艺辅助的自动水解作用将核桃壳中的半纤维素和无定形纤维素解聚,以液体馏分(水解产物)的形式得到木糖的含量为63.5%w / w,而葡萄糖的产量最低。获得高木糖收率和低副产物滴度的最佳反应条件是190℃25分钟。 L-(+)乳酸是由嗜热芽孢杆菌DSM 2314产生的,其中木糖和葡萄糖的碳源溶于自水解核桃壳的水解物中。一种非无菌,简单的发酵培养基,加上在厌氧环境中对粗水解产物进行pH调节,导致L-(+)乳酸的收率为81%w / w,生产率为0.2 g / L / h。 (C)2019 Elsevier Ltd.保留所有权利。

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