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黑麦麦芽的乙醇发酵:影响醛形成和过程效率的因素。

Ethanolic Fermentation of Rye Mashes: Factors Influencing the Formation of Aldehydes and Process Efficiency.

机构信息

Faculty of Biotechnology and Food Sciences, Institute of Fermentation Technology and Microbiology, Lodz University of Technology, Wolczanska 171/173, 90-530 Lodz, Poland.

出版信息

Biomolecules. 2022 Aug 6;12(8):1085. doi: 10.3390/biom12081085.

Abstract

High concentrations of aldehydes may result in poor-quality agricultural distillate. We investigate the influence of the method of mash preparation, the initial pH of the mashes, and different yeast strains on the fermentation efficiency and concentration of aldehydes from C2 (acetaldehyde) to C7 (enanthaldehyde) in rye mashes. The tested factors were revealed to have a differentiated influence on both the process efficiency and the concentrations of aldehydes, especially in the case of the dominant acetaldehyde. Mashes obtained from steamed rye grain showed significantly higher fermentation efficiencies than those prepared by the pressureless method. Increasing the pH of the sweet mashes from 4.5 to 6.0 resulted in significantly higher concentrations of acetaldehyde, especially in the case of steamed rye grain. Moreover, an increase in the concentrations of other aldehydes, i.e., from C3 (propionaldehyde) to C5 (valer- and isovaleraldehyde) was observed. A high fermentation efficiency and the lowest acetaldehyde concentrations were obtained from steamed rye mashes with an initial pH of 4.5, fermented using the yeast strains DistilaMax GW and DistilaMax HT. DistilaMax HT yeast also provided a relatively low concentration of acetaldehyde in mashes with an initial pH in the range of 4.5-5.5 prepared by the energy-saving pressureless method.

摘要

高浓度的醛类可能会导致农业蒸馏物质量下降。我们研究了醪液制备方法、初始 pH 值以及不同酵母菌株对黑麦醪液中从 C2(乙醛)到 C7(庚醛)的发酵效率和醛浓度的影响。结果表明,这些测试因素对发酵效率和醛浓度都有不同的影响,特别是对占主导地位的乙醛。与常压法相比,蒸汽处理的黑麦籽粒醪液显示出明显更高的发酵效率。将甜醪液的 pH 值从 4.5 增加到 6.0 会导致乙醛浓度显著增加,特别是在蒸汽处理的黑麦籽粒醪液中。此外,观察到其他醛类的浓度增加,即从 C3(丙醛)到 C5(戊醛和异戊醛)。采用初始 pH 值为 4.5 的蒸汽处理黑麦醪液,使用酵母菌株 DistilaMax GW 和 DistilaMax HT 进行发酵,可获得高发酵效率和最低的乙醛浓度。酵母菌株 DistilaMax HT 还可在通过节能常压法制备的初始 pH 值在 4.5-5.5 范围内的醪液中提供相对较低的乙醛浓度。

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