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Succinic acid production from orange peel and wheat straw by batch fermentations of Fibrobacter succinogenes S85

机译:琥珀酸纤维状杆菌S85的分批发酵生产橙皮和麦草中的琥珀酸

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摘要

Succinic acid is a platform molecule that has recently generated considerable interests. Production of succinate from waste orange peel and wheat straw by consolidated bioprocessing that combines cellulose hydrolysis and sugar fermentation, using a cellulolytic bacterium, Fibrobacter succinogenes S85, was studied. Orange peel contains D-limonene, which is a well-known antibacterial agent. Its effects on batch cultures of F. succinogenes S85 were examined. The minimal concentrations of limonene found to inhibit succinate and acetate generation and bacterial growth were 0.01%, 0.1%, and 0.06% (v/v), respectively. Both pre-treated orange peel by steam distillation to remove D-limonene and intact wheat straw were used as feedstocks. Increasing the substrate concentrations of both feedstocks, from 5 to 60 g/L, elevated succinate concentration and productivity but lowered the yield. In addition, pre-treated orange peel generated greater succinate productivities than wheat straw but had similar resultant titres. The greatest succinate titres were 1.9 and 2.0 g/L for pre-treated orange peel and wheat straw, respectively. This work demonstrated that agricultural waste such as wheat straw and orange peel can be biotransformed to succinic acid by a one-step consolidated bioprocessing. Measures to increase fermentation efficiency are also discussed.
机译:琥珀酸是最近引起人们极大关注的平台分子。研究了利用纤维素分解细菌纤维状琥珀酸杆菌S85,通过结合纤维素水解和糖发酵的整合生物工艺,从废橘皮和小麦秸秆中生产琥珀酸酯。桔皮中含有D-柠檬烯,这是一种众所周知的抗菌剂。考察了其对琥珀酸短杆菌基因S85分批培养的影响。发现抑制琥珀酸和乙酸盐生成和细菌生长的柠檬烯的最低浓度分别为0.01%,0.1%和0.06%(v / v)。通过蒸汽蒸馏除去D-柠檬烯的预处理橘皮和完整的麦草都用作原料。将两种原料的底物浓度从5 g / L提高到60 g / L,会提高琥珀酸盐的浓度和生产率,但会降低产量。此外,经过预处理的橙皮比小麦秸秆产生更高的琥珀酸酯生产率,但滴定度却相似。预处理的橙皮和麦草的最大琥珀酸盐滴度分别为1.9和2.0 g / L。这项工作表明,可以通过一步整合生物处理将农业废料(例如麦草和橙皮)生物转化为琥珀酸。还讨论了提高发酵效率的措施。

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