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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Simultaneous saccharification and fermentation of lignocellulosic residues pretreated with phosphoric acid-acetone for bioethanol production
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Simultaneous saccharification and fermentation of lignocellulosic residues pretreated with phosphoric acid-acetone for bioethanol production

机译:磷酸丙酮预处理的木质纤维素残留物同时糖化和发酵以生产生物乙醇

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摘要

Bermudagrass, reed and rapeseed were pretreated with phosphoric acid-acetone and used for ethanol production by means of simultaneous saccharification and fermentation (SSF) with a batch and fed-batch mode. When the batch SSF experiments were conducted in a 3% low effective cellulose, about 16 g/L of ethanol were obtained after 96 h of fermentation. When batch SSF experiments were conducted with a higher cellulose content (10% effective cellulose for reed and bermudagrass and 5% for rapeseed), higher ethanol concentrations and yields (of more than 93%) were obtained. The fed-batch SSF strategy was adopted to increase the ethanol concentration further. When a higher water-insoluble solid (up to 36%) was applied, the ethanol concentration reached 56 g/L of an inhibitory concentration of the yeast strain used in this Study at 38 degrees C. The results show that the pretreated materials can be used as good feed-stocks for bioethanol production, and that the phosphoric acid-acetone Pretreatment can effectively yield a higher ethanol concentration. (C) 2009 Elsevier Ltd. All rights reserved.
机译:用磷酸-丙酮对百慕大草,芦苇和油菜籽进行预处理,并通过分批补料和分批补料的方式同时进行糖化和发酵(SSF)来生产乙醇。当在3%低效纤维素中进行批量SSF实验时,发酵96小时后可获得约16 g / L乙醇。当使用较高的纤维素含量(芦苇和百慕大草的有效纤维素为10%,菜籽的有效纤维素为5%)进行批量SSF实验时,可获得更高的乙醇浓度和产率(超过93%)。采用补料分批SSF策略进一步提高了乙醇浓度。当使用更高的水不溶性固体(最高36%)时,在38摄氏度下,乙醇浓度达到本研究中使用的酵母菌株抑制浓度的56 g / L。结果表明,经预处理的材料可以用作生物乙醇生产的良好原料,磷酸丙酮预处理可有效产生更高的乙醇浓度。 (C)2009 Elsevier Ltd.保留所有权利。

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