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Biobutanol production from pruned vine shoots

机译:从修剪藤芽的生物催化剂生产

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This research aimed to demonstrate the feasibility of producing biobutanol by acetone-butanol-ethanol (ABE) fermentation on vine shoots at laboratory scale. In order to avoid a detoxification process prior to fermentation, an alkaline pretreatment and its posterior enzymatic hydrolysis were optimized through a response surface methodology (RSM) approach to minimize the concentration of phenolic inhibitors and maximize the amount of fermentable sugars. This vine shoots hydrolysate was directly fermented by 11 solventogenic Clostridium strains, reaching butanol concentrations over 8.0 g/L with C. beijerinckii CECT 508 and DSM 6423. The strain CECT 508 was selected to tune up a fermentation medium with the minimum possible amount of nutrients through a Plackett-Burman experimental design, thus reducing the cost of the fermentation broth while ensuring a high ABE solvent production. Finally, it was also shown that CaCO3 could be substituted by eggshell powder as buffering agent, maintaining a biobutanol production over 7 g/L. This study demonstrates, for the first time, that biobutanol production from vine shoots is possible and that cost reduction based on alternative strategies of nutrient supplementation is viable. (C) 2021 Elsevier Ltd. All rights reserved.
机译:该研究旨在证明在实验室规模的葡萄芽上通过丙酮 - 丁醇 - 乙醇(ABE)发酵生产生物灭菌醇的可行性。为了避免在发酵之前进行排毒过程,通过响应表面方法(RSM)方法优化碱性预处理及其后酶水解,以最小化酚醛抑制剂的浓度并最大限度地提高可发酵糖的量。该藤芽水解产物被11个溶剂型梭菌菌株直接发酵,达到丁醇浓度超过8.0g / L的C.Beijerincki CECT 508和DSM 6423。选择菌株CECT 508以调整发酵培养基,最低可能的营养量通过Plackett-Burman的实验设计,从而降低发酵液的成本,同时确保高ABE溶剂生产。最后,还表明CaCO 3可以被蛋壳粉末作为缓冲剂代替,维持超过7g / l的生物脱盐产物。本研究首次证明了从藤芽中产生的生物灭菌生产,并且基于营养素补充的替代策略的成本降低是可行的。 (c)2021 elestvier有限公司保留所有权利。

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