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絮凝性酿酒酵母对甘蔗糖蜜的高浓度和超高浓度发酵:实验研究与动力学建模。

High Gravity and Very High Gravity Fermentation of Sugarcane Molasses by Flocculating Saccharomyces cerevisiae: Experimental Investigation and Kinetic Modeling.

机构信息

Multidisciplinary Group of Research, Science and Technology (RMPCT), School of Chemical Engineering, Federal University of Uberlândia, Patos de Minas, MG, Brazil.

School of Chemical Engineering, Federal University of Uberlândia, Uberlândia, MG, Brazil.

出版信息

Appl Biochem Biotechnol. 2021 Mar;193(3):807-821. doi: 10.1007/s12010-020-03466-9. Epub 2020 Nov 16.

DOI:10.1007/s12010-020-03466-9
PMID:33196971
Abstract

Substantial progress has been made in ethanol fermentation technology under high gravity (HG) and very high gravity (VHG), which offer environmental and economic benefits. HG and VHG processes increase the productivity of ethanol, reduce distillation costs, and enable higher yields. The aim of the present study was to evaluate the use of sugarcane molasses as the medium component along with flocculating yeasts for fermentation in a fed-batch process employing this promising technology. We evaluated fed-batch fermentation, HG, and VHG involving a molasses-based medium with high concentrations of reducing sugars (209, 222, and 250 g/L). Fermentation of 222 g/L of total reducing sugars achieved 89.45% efficiency, with a final ethanol concentration of 104.4 g/L, whereas the highest productivity (2.98 g/(L.h)) was achieved with the fermentation of 209 g/L of total reducing sugars. The ethanol concentration achieved with the fermentation of 222 g/L of total reducing sugars was close to the value obtained for P' (105.35 g/L). The kinetic model provided a good fit to the experimental data regarding the fermentation of 222 g/L. The results revealed that sugarcane molasses and flocculating yeasts can be efficiently used in HG fermentation to reduce the costs of the process and achieve high ethanol titers.

摘要

在高浓度(HG)和超高浓度(VHG)下的乙醇发酵技术取得了实质性进展,为环境和经济带来了效益。HG 和 VHG 工艺提高了乙醇的生产力,降低了蒸馏成本,并实现了更高的产量。本研究旨在评估使用甘蔗废糖蜜作为培养基成分,并结合絮凝酵母,在采用这一有前途的技术的分批补料发酵过程中进行发酵。我们评估了分批补料发酵、HG 和 VHG,涉及到高浓度还原糖(209、222 和 250 g/L)的废糖蜜基培养基。发酵 222 g/L 的总还原糖达到了 89.45%的效率,最终乙醇浓度为 104.4 g/L,而发酵 209 g/L 的总还原糖实现了最高的生产率(2.98 g/(L.h))。发酵 222 g/L 的总还原糖达到的乙醇浓度接近 P'(105.35 g/L)的值。动力学模型对发酵 222 g/L 的实验数据拟合良好。结果表明,甘蔗废糖蜜和絮凝酵母可有效地用于 HG 发酵,以降低工艺成本并实现高乙醇浓度。

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