首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Cellulosic Ethanol Production From Afex-treated Corn Stover Using Saccharomyces Cerevisiae 424a(lnh-st)
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Cellulosic Ethanol Production From Afex-treated Corn Stover Using Saccharomyces Cerevisiae 424a(lnh-st)

机译:使用酿酒酵母424a(lnh-st)从Afex处理的玉米秸秆中生产纤维素乙醇

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摘要

Current technology using corn stover (CS) as feedstock, Ammonia Fiber Expansion (AFEX) as the pretreatment technology, and Saccharomyces cerevisiae 424A(LNH-ST) as the ethanologenic strain in Separate Hydrolysis and Fermentation was able to achieve 191.5 g EtOH/kg untreated CS, at an ethanol concentration of 40.0 g/L (5.1 vol/vol%) without washing of pretreated biomass, detoxification, or nutrient supplementation. Enzymatic hydrolysis at high solids loading was identified as the primary bottleneck affecting overall ethanol yield and titer. Degradation compounds in AFEX-pre-treated biomass were shown to increase metabolic yield and specific ethanol production while decreasing the cell biomass generation. Nutrients inherently present in CS and those resulting from biomass processing are sufficient to support microbial growth during fermentation. This platform offers the potential to improve the economics of cellulosic ethanol production by reducing the costs associated with raw materials, process water, and capital equipment.
机译:在分离水解和发酵中,以玉米秸秆(CS)为原料,氨水膨胀法(AFEX)为预处理技术,酿酒酵母424A(LNH-ST)为产乙醇菌株的现有技术能够达到191.5 g EtOH / kg CS,乙醇浓度为40.0 g / L(5.1 vol / vol%),无需洗涤预处理的生物质,解毒或补充营养。高固含量的酶水解被确定为影响总乙醇产量和效价的主要瓶颈。 AFEX预处理的生物质中的降解化合物显示出可增加代谢产量和特定乙醇的产生,同时减少细胞生物质的产生。 CS中固有的营养以及生物质加工产生的营养足以支持发酵过程中的微生物生长。该平台通过降低与原材料,工艺用水和固定设备相关的成本,提供了改善纤维素乙醇生产经济性的潜力。

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