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Improving simultaneous saccharification and co-fermentation of pretreated wheat straw using both enzyme and substrate feeding

机译:同时使用酶和底物进料改善预处理的麦草的同时糖化和共同发酵

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摘要

BackgroundSimultaneous saccharification and co-fermentation (SSCF) has been recognized as a feasible option for ethanol production from xylose-rich lignocellulosic materials. To reach high ethanol concentration in the broth, a high content of water-insoluble solids (WIS) is needed, which creates mixing problems and, furthermore, may decrease xylose uptake. Feeding of substrate has already been proven to give a higher xylose conversion than a batch SSCF. In the current work, enzyme feeding, in addition to substrate feeding, was investigated as a means of enabling a higher WIS content with a high xylose conversion in SSCF of a xylose-rich material. A recombinant xylose-fermenting strain of Saccharomyces cerevisiae (TMB3400) was used for this purpose in fed-batch SSCF experiments of steam-pretreated wheat straw.
机译:背景技术同步糖化和共同发酵(SSCF)已被认为是从富含木糖的木质纤维素材料生产乙醇的可行选择。为了在肉汤中达到高乙醇浓度,需要高含量的水不溶性固体(WIS),这会产生混合问题,此外,还可能降低木糖的摄取。底物的进料已被证明比批次SSCF的木糖转化率更高。在当前的工作中,除了底物进料外,还研究了酶进料作为一种手段,该方法可以在富含木糖的材料的SSCF中实现较高的WIS含量和高的木糖转化率。为此,将重组酿酒酵母木糖发酵菌株(TMB3400)用于蒸汽预处理的小麦秸秆的分批补料SSCF实验中。

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