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Design of hydrothermal and subsequent lime pretreatment for fermentable sugar and bioethanol production from acacia wood

机译:用于可发酵的糖和生物乙醇生产的水热和随后的石灰预处理的设计

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In this study, lime (calcium hydroxide) treatment (LT) was applied as an alkaline pretreatment subsequent to hydrothermal treatment (HT) in terms of fermentable sugar and bioethanol production from acacia wood. To maximize the hydrolysis of cellulose and hemicellulose, the condition of 200 degrees C for 10 min of HT was selected for subsequent lime treatment. The optimum conditions of LT were established to be a ratio of calcium hydroxide to hydrothermally treated acacia biomass of 12.2%, temperature of 70.9 degrees C, and reaction time of 23.5 h using a response surface methodology, and the maximum glucose yield by prediction and experiment were determined to be 74.4% and 73.5%, respectively. Further mechanical refining accelerated the access of the enzyme to glucan, resulting in an increase in glucose conversion (80.5%). Although the glucose yield by LT was 21.5% higher than that of HT, the ethanol yield was 33.5% lower due to the negative effect of residual calcium ions on yeast fermentation. (C) 2021 Elsevier Ltd. All rights reserved.
机译:在该研究中,在可发酵的糖和来自金合欢木材的可发酵糖和生物乙醇生产方面,将石灰(氢氧化钙)处理(LT)作为碱性预处理作为水热处理(HT)。为了使纤维素和半纤维素的水解最大化,选择200摄氏度的HT的条件用于随后的石灰处理。建立了LT的最佳条件为氢氧化钙与水热处理的合欢生物质的比例为12.2%,温度为70.9℃,反应时间使用响应表面方法,以及通过预测和实验的最大葡萄糖产量确定分别为74.4%和73.5%。进一步的机械精炼加速了酶对葡聚糖的进入,导致葡萄糖转化率的增加(80.5%)。虽然LT的葡萄糖产率高于HT的21.5%,但由于残留钙离子对酵母发酵的负面影响,乙醇产率降低了33.5%。 (c)2021 elestvier有限公司保留所有权利。

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