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首页> 外文期刊>Chemical Engineering Science >Continuous ethanol production from sugarcane bagasse hydrolysate at high temperature with cell recycle and in-situ recovery of ethanol
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Continuous ethanol production from sugarcane bagasse hydrolysate at high temperature with cell recycle and in-situ recovery of ethanol

机译:高温下从甘蔗渣水解液中连续生产乙醇,并具有细胞再循环功能和原位回收乙醇

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A continuous process with cell recycle was demonstrated on fermentation of sugarcane bagasse hydrolysate to ethanol having a facility of in-situ stripping of ethanol by air or nitrogen gas. The thermotolerant yeast Kluyveromyces sp. IIPE453, grown in xylose-rich hydrolysate, was used in this study for fermenting the glucose-rich hydrolysate at 50 degrees C. The effect of dilution rate, cell mass concentration, and air or nitrogen gas stripping on ethanol production was evaluated. The maximum volumetric productivity of ethanol was 1.22 gl(-1) h(-1) on stripping the bioreactor with nitrogen at a dilution rate of 0.075 h(-1). An ethanol yield of 96% of its theoretical value and 95% sugar conversion efficiency could be obtained while the ethanol concentration in the condensate of the stripper was found to be 56.3 gl(-1), which was almost 3.4 times concentrated as compared to ethanol concentration in the broth without stripping. The specific ethanol productivity could be improved due to increase in sugar conversion efficiency and higher ethanol yield in a continuous cell recycle fermentation system applying gas stripping at high temperature. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在甘蔗渣水解物发酵成乙醇后,用空气或氮气原位汽提乙醇,证明了具有细胞循环的连续过程。耐热酵母克鲁维酵母属。在本研究中,使用在富含木糖的水解物中生长的IIPE453在50℃下发酵富含葡萄糖的水解产物。评估了稀释率,细胞质量浓度以及空气或氮气汽提对乙醇生产的影响。乙醇的最大体积生产率为1.22 gl(-1)h(-1),用0.075 h(-1)的稀释率用氮气汽提生物反应器。可以得到理论值的96%的乙醇产率和95%的糖转化效率,而汽提塔冷凝液中的乙醇浓度为56.3 gl(-1),是乙醇的近3.4倍。在肉汤中浓缩而不剥皮。在高温下进行气提的连续细胞循环发酵系统中,由于糖转化效率的提高和乙醇产量的提高,可以提高乙醇的比生产率。 (C)2015 Elsevier Ltd.保留所有权利。

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