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A short review on SSF – an interesting process option for ethanol production from lignocellulosic feedstocks

机译:关于SSF的简短回顾-从木质纤维素原料生产乙醇的有趣工艺选择

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摘要

Simultaneous saccharification and fermentation (SSF) is one process option for production of ethanol from lignocellulose. The principal benefits of performing the enzymatic hydrolysis together with the fermentation, instead of in a separate step after the hydrolysis, are the reduced end-product inhibition of the enzymatic hydrolysis, and the reduced investment costs. The principal drawbacks, on the other hand, are the need to find favorable conditions (e.g. temperature and pH) for both the enzymatic hydrolysis and the fermentation and the difficulty to recycle the fermenting organism and the enzymes. To satisfy the first requirement, the temperature is normally kept below 37°C, whereas the difficulty to recycle the yeast makes it beneficial to operate with a low yeast concentration and at a high solid loading. In this review, we make a brief overview of recent experimental work and development of SSF using lignocellulosic feedstocks. Significant progress has been made with respect to increasing the substrate loading, decreasing the yeast concentration and co-fermentation of both hexoses and pentoses during SSF. Presently, an SSF process for e.g. wheat straw hydrolyzate can be expected to give final ethanol concentrations close to 40 g L-1 with a yield based on total hexoses and pentoses higher than 70%.
机译:同步糖化和发酵(SSF)是从木质纤维素生产乙醇的一种工艺选择。与发酵一起进行酶促水解而不是在水解后在单独的步骤中进行的主要好处是减少了对酶促水解的最终产物抑制,并降低了投资成本。另一方面,主要缺点是需要为酶促水解和发酵寻找有利的条件(例如温度和pH),以及难以使发酵生物和酶再循环。为了满足第一个要求,通常将温度保持在37°C以下,而难以回收酵母使在低酵母浓度和高固体载量下操作有利。在这篇综述中,我们对使用木质纤维素原料的SSF的最新实验工作和开发进行了简要概述。在增加底物负荷,降低酵母浓度以及在SSF过程中己糖和戊糖的共同发酵方面已经取得了重大进展。目前,例如预计小麦秸秆水解物的最终乙醇浓度接近40 g L -1 ,基于总己糖和戊糖的收率高于70%。

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