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The Effect of Different Starch Liberation and Saccharification Methods on the Microbial Contaminations of Distillery Mashes, Fermentation Efficiency, and Spirits Quality

The Effect of Different Starch Liberation and Saccharification Methods on the Microbial Contaminations of Distillery Mashes, Fermentation Efficiency, and Spirits Quality
The aim of this study was to evaluate the influence of different starch liberation and saccharification methods on microbiological contamination of distillery mashes. Moreover, the effect of hop α-acid preparation for protection against microbial infections was assessed. The quality of agricultural distillates was also evaluated. When applying the pressureless liberation of starch (PLS) and malt as a source of amylolytic enzymes, the lactic acid bacteria count in the mashes increased several times during fermentation. The mashes obtained using the pressure-thermal method and malt enzymes revealed a similar pattern. Samples prepared using cereal malt exhibited higher concentrations of lactic and acetic acids, as compared to mashes prepared using enzymes of microbial origin. The use of hop α-acids led to the reduction of bacterial contamination in all tested mashes. As a result, fermentation of both mashes prepared with microbial origin enzyme preparations and with barley malt resulted in satisfactory efficiency and distillates with low concentrations of aldehydes.
ethanol fermentation, malt, Aldehydes, Ethanol, hop α-acids, Temperature, Organic chemistry, Food Contamination, Hordeum, Starch, Saccharomyces cerevisiae, Article, agricultural distillate, QD241-441, starch liberation, Fermentation, Food Quality, Humans, starch liberation; ethanol fermentation; malt; hop α-acids; agricultural distillate, Edible Grain, Acids
ethanol fermentation, malt, Aldehydes, Ethanol, hop α-acids, Temperature, Organic chemistry, Food Contamination, Hordeum, Starch, Saccharomyces cerevisiae, Article, agricultural distillate, QD241-441, starch liberation, Fermentation, Food Quality, Humans, starch liberation; ethanol fermentation; malt; hop α-acids; agricultural distillate, Edible Grain, Acids
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