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Solar-Energy Driven Simultaneous Saccharification and Fermentation of Starch to Bioethanol for Fuel-Cell Applications

机译:太阳能驱动的同时糖化和燃料电池应用的生物乙醇的发酵

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摘要

A solar reactor was designed to perform the conversion of starch to ethanol in a single step. An aqueous starch solution (5wt%) was fed into the reactor bed charged with Baker's yeast (Saccharomyces cerevisiae) and amylase, resulting in approximately 2.5wt% ethanol collected daily (ca. 25mLday(-1)). A significant amount of ethanol (38g) was collected over 63days, corresponding to 84% of the theoretical yield. The production of ethanol without additional energy input highlights the significance of this new process. The ethanol produced was also demonstrated as a potential fuel for direct ethanol fuel cells. Additionally, the secondary metabolite glycerol was fully reduced to a value-added product 1,3-propanediol, which is the first example of a fungal strain (Baker's yeast) converting glycerol insitu to 1,3-propanediol.
机译:设计太阳反应器在单一步骤中以在乙醇中进行淀粉对乙醇的转化。 将淀粉水溶液(5wt%)加入到具有面包酵母(酿酒酵母)和淀粉酶的反应器床中,导致每日收集约2.5wt%的乙醇(约25mlday(-1))。 在63天收集大量乙醇(38g),相当于理论产率的84%。 乙醇的生产没有额外的能量输入突出了这一新过程的重要性。 还证明了产生的乙醇作为直接乙醇燃料电池的潜在燃料。 另外,次级代谢物甘油完全减少到增值产物1,3-丙二醇,其是真菌菌株(面包酵母酵母)转化甘油Insitu至1,3-丙二醇的第一实例。

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