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Optimization of d-lactic acid production using unutilized biomass as substrates by multiple parallel fermentation

机译:以未利用的生物质为底物通过多次平行发酵优化d-乳酸生产

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摘要

This study investigated the optimization of d-lactic acid production from unutilized biomass, specifically banana peel and corncob by multiple parallel fermentation (MPF) with Leuconostoc mesenteroides and Aspergillus awamori. The factors involved in MPF that were assessed in this study comprised banana peel and corncob, KH2PO4, Tween 80, MgSO4·7H2O, NaCl, yeast extract, and diammonium hydrogen citrate to identify the optimal concentration for d-lactic acid production. Optimization of these component factors was performed using the Taguchi method with an L8 orthogonal array. The optimal concentrations for the effectiveness of MPF using biomass substrates were as follows: (1) banana peel, d-lactic acid production was 31.8 g/L in medium containing 15 % carbon source, 0.5 % KH2PO4, 0.1 % Tween 80, 0.05 % MgSO4·7H2O, 0.05 % NaCl, 1.5 % yeast extract, and 0.2 % diammonium hydrogen citrate. (2) corncob, d-lactic acid production was 38.3 g/L in medium containing 15 % of a carbon source, 0.5 % KH2PO4, 0.1 % Tween 80, 0.05 % MgSO4·7H2O, 0.1 % NaCl, 1.0 % yeast extract, and 0.4 % diammonium hydrogen citrate. Thus, both banana peel and corncob are unutilized potential resources for d-lactic acid production. These results indicate that MPF using L. mesenteroides and A. awamori could constitute part of a potential industrial application of the currently unutilized banana peel and corncob biomass for d-lactic acid production.
机译:这项研究调查了通过利用米氏隐球菌和泡盛曲霉的多重平行发酵(MPF),从未利用的生物质,特别是香蕉皮和玉米芯中生产d-乳酸的优化。在这项研究中评估的MPF涉及因素包括香蕉皮和玉米芯,KH2PO4,吐温80,MgSO4·7H2O,NaCl,酵母提取物和柠檬酸氢二铵,以确定用于生产D-乳酸的最佳浓度。使用Taguchi方法和L8正交阵列对这些组成因素进行优化。使用生物质底物的MPF有效性的最佳浓度如下:(1)香蕉皮,在含有15%碳源,0.5%KH2PO4、0.1%Tween 80、0.05%的培养基中,d-乳酸产量为31.8 g / L MgSO4·7H2O,0.05%NaCl,1.5%酵母提取物和0.2%柠檬酸氢二铵。 (2)在含有15%碳源,0.5%KH2PO4、0.1%Tween 80、0.05%MgSO4·7H2O,0.1%NaCl,1.0%酵母抽提物的培养基中,玉米芯,d-乳酸的产量为38.3 g / L 0.4%柠檬酸氢二铵因此,香蕉皮和玉米芯都不能用于生产d-乳酸。这些结果表明,使用mesenteroides和A.awamori的MPF可能构成当前未利用的香蕉皮和玉米芯生物质用于D-乳酸生产的潜在工业应用的一部分。

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