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Fuel ethanol production from steam-pretreated corn stover using SSF at higher dry matter content

机译:使用SSF在蒸汽预处理的玉米秸秆中以较高的干物质含量生产燃料乙醇

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Replacing fossil fuels by bio-fuels has many advantages, such as the reduction of CO_2-emission to the atmosphere, the possibility for non-oil-producing countries to be self-sufficient in fuel, and increased local job opportunities. Bio-ethanol is such a promising renewable fuel. However, today it is produced from sugar or starch—raw materials that are relatively expensive. To lower the production cost of bio-ethanol the cost of the raw material must be reduced and the production process made more efficient. The production of bio-ethanol from corn stover using simultaneous saccharification and fermentation (SSF) at high dry matter content addresses both issues. Corn stover is an agricultural by-product and thus has a low economic value. SSF at high dry matter content results in a high ethanol concentration in the fermented slurry, thereby decreasing the energy demand in the subsequent distillation step. In this study, SSF was performed on steam-pretreated corn stover at 5, 7.5 and 10% water-insoluble solids (WIS) with 2g/L hexose-fermenting Saccharomyces cerevisiae (ordinary compressed baker's yeast). SSF at 10% WIS resulted in an ethanol yield of 74% based on the glucose content in the raw material and an ethanol concentration of 25 g/L. Neither higher yeast concentration (5 g/L) nor yeast cultivated on the liquid after the pretreatment resulted, under these conditions, in a higher overall ethanol yield.
机译:用生物燃料替代化石燃料具有许多优势,例如减少向大气中排放的CO_2,非产油国可以自给自足的燃料以及增加本地就业机会。生物乙醇是一种很有前途的可再生燃料。但是,今天它是由糖或淀粉制成的,而原料是相对昂贵的。为了降低生物乙醇的生产成本,必须降低原材料成本,并使生产过程更有效。使用同时糖化和发酵(SSF)的高干物质含量从玉米秸秆生产生物乙醇解决了两个问题。玉米秸秆是农业的副产品,因此经济价值较低。干物质含量高的SSF导致发酵浆液中乙醇浓度高,从而降低了后续蒸馏步骤中的能量需求。在这项研究中,SSF在蒸汽预处理的玉米秸秆上以5%,7.5%和10%的水不溶性固体(WIS)和2g / L己糖发酵的酿酒酵母(普通压缩面包酵母)进行。基于原料中的葡萄糖含量和10%WIS的SSF,乙醇产率为74%,乙醇浓度为25 g / L。在这些条件下,较高的酵母浓度(5 g / L)和预处理后在液体上培养的酵母都不会导致较高的总乙醇产量。

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