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Ethanol production from hexoses, pentoses, and dilute-acid hydrolyzate by Mucor indicus

机译:Mucor indicus从己糖,戊糖和稀酸水解物中生产乙醇

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Consumption of hexoses and pentoses and production of ethanol by Mucor indicus were investigated in both synthetic media and dilute-acid hydrolyzates. The fungus was able to grow in a poor medium containing only carbon, nitrogen, phosphate, potassium, and magnesium sources. However, the cultivation took more than a week and the ethanol yield was only 0.2 gg(-1). Enrichment of the medium by addition of trace metals, particularly zinc and yeast extract, improved the growth rate and yield, such that the cultivation was completed in less than 24 h and the ethanol and biomass yields were increased to 0.40 and 0.20 gg(-1), respectively. The fungus was able to assimilate glucose, galactose, mannose, and xylose, and produced ethanol with yields of 0.40, 0.34, 0.39, and 0.18 gg(-1), respectively. However, arabinose was poorly consumed and no formation of ethanol was detected. Glycerol was the major by-product in the cultivation on the hexoses, while formation of glycerol and xylitol were detected in the cultivation of the fungus on xylose. The fungus was able to take up the sugars present in dilute-acid hydrolyzate as well as the inhibitors, acetic acid, furfural, and hydroxymethyl furfural. M. indicus was able to grow under anaerobic conditions when glucose was the sole carbon source, but not on xylose or the hydrolyzate. The yield of ethanol in anaerobic cultivation on glucose was 0.46 g g(-1).
机译:在合成培养基和稀酸水解产物中均研究了Mucor indicus消耗己糖和戊糖以及生产乙醇的情况。真菌能够在仅包含碳,氮,磷酸盐,钾和镁源的不良培养基中生长。但是,培养花费了一周以上的时间,乙醇的产量仅为0.2 gg(-1)。通过添加微量金属(尤其是锌和酵母提取物)来富集培养基,可提高生长速度和产量,从而在不到24小时的时间内完成培养,乙醇和生物质的产量分别提高至0.40和0.20 gg(-1) ), 分别。该真菌能够吸收葡萄糖,半乳糖,甘露糖和木糖,并产生乙醇,产率分别为0.40、0.34、0.39和0.18 gg(-1)。但是,阿拉伯糖消耗很少,没有检测到乙醇的形成。甘油是在己糖上培养的主要副产物,而在木糖上真菌的培养中检测到甘油和木糖醇的形成。真菌能够吸收稀酸水解物中存在的糖以及抑制剂,乙酸,糠醛和羟甲基糠醛。当葡萄糖是唯一的碳源,但不是在木糖或水解产物上时,印度分枝杆菌能够在厌氧条件下生长。葡萄糖厌氧培养乙醇的产量为0.46 g g(-1)。

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