利用高粱汁和甘蔗渣混合物生产生物乙醇:实验数据和动力学模型

IF 1.8 3区 农林科学 Q2 AGRONOMY
E. H. Silva, D. A. Lemos, A. J. G. Cruz, A. C. Badino, R. G. Silva, J. L. S. Sonego
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引用次数: 0

摘要

摘要 巴西的蒸馏厂主要使用甘蔗汁生产生物乙醇,生产仅限于甘蔗收获期。本研究评估了使用高粱汁和稀甘蔗糖蜜混合发酵液生产乙醇的情况,目的是缩短乙醇生产的淡季。首先,利用完全由稀释甘蔗糖蜜和甜高粱汁制备的葡萄汁进行乙醇发酵动力学建模。随后,用稀释甘蔗糖蜜和甜高粱汁按不同比例混合配制的葡萄汁进行乙醇发酵。安德鲁斯-莱文斯皮尔混合模型对使用单独葡萄汁进行发酵的实验数据提供了极好的拟合。与仅使用稀释甘蔗糖蜜的发酵相比,在所有使用混合葡萄汁的发酵中,底物吸收更快,底物耗尽更早。与仅使用甘蔗糖蜜发酵相比,使用 25% 的稀释糖蜜和 75% 的甜高粱汁混合发酵的乙醇生产率(单位:克升/小时-1)高出约 17%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bioethanol Production Using Mixtures of Sorghum Juice and Sugarcane Molasses: Experimental Data and Kinetic Modeling

In Brazilian distilleries, bioethanol is mainly produced using musts obtained from sugarcane, with production restricted to the sugarcane harvest period. The present work evaluated ethanol production using fermentation musts prepared from a mixture of sorghum juice and diluted sugarcane molasses, with the aim of shortening the off-season of ethanol production. Firstly, kinetic modeling of ethanol fermentation was performed employing musts prepared solely with diluted sugarcane molasses and sweet sorghum juice. Subsequently, ethanol fermentations were carried out with musts prepared by mixing diluted sugarcane molasses and sweet sorghum juice in different proportions. The hybrid Andrews–Levenspiel model provided excellent fits to the experimental data for the fermentations performed with the individual musts. In all the fermentations with mixed musts, there was faster substrate uptake and earlier substrate exhaustion, compared to the fermentation using only diluted sugarcane molasses. The fermentation initiated with a mixture of 25% diluted molasses and 75% sweet sorghum juice resulted in around 17% higher ethanol productivity (in units of g L−1 h−1), compared to the fermentation with sugarcane molasses alone.

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来源期刊
Sugar Tech
Sugar Tech AGRONOMY-
CiteScore
3.90
自引率
21.10%
发文量
145
期刊介绍: The journal Sugar Tech is planned with every aim and objectives to provide a high-profile and updated research publications, comments and reviews on the most innovative, original and rigorous development in agriculture technologies for better crop improvement and production of sugar crops (sugarcane, sugar beet, sweet sorghum, Stevia, palm sugar, etc), sugar processing, bioethanol production, bioenergy, value addition and by-products. Inter-disciplinary studies of fundamental problems on the subjects are also given high priority. Thus, in addition to its full length and short papers on original research, the journal also covers regular feature articles, reviews, comments, scientific correspondence, etc.
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