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Fermentation of high concentrations of lactose to ethanol by engineered flocculent Saccharomyces cerevisiae

机译:工程絮凝酿酒酵母发酵高浓度乳糖至乙醇

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摘要

The development of microorganims that efficiently ferment lactose has a high biotechnological interest, particularly for cheese whey bioremediation processes with simultaneous bio-ethanol production. The lactose fermentation performance of a recombinant Saccharomyces cerevisiae flocculent strain was evaluated. The yeast consumed rapidly and completely lactose concentrations up to 150 g l−1 in either well- or micro-aerated batch fermentations. The maximum ethanol titre was 8% (v/v) and the highest ethanol productivity was 1.5–2 g l−1 h−1, in micro-aerated fermentations. The results presented here emphasise that this strain is an interesting alternative for the production of ethanol from lactose-based feedstocks.
机译:有效发酵乳糖的微生物的开发具有很高的生物技术意义,特别是对于同时生产生物乙醇的干酪乳清生物修复工艺。评价了重组酿酒酵母絮凝菌株的乳糖发酵性能。在充分充气或微充气的分批发酵中,酵母消耗的乳糖迅速而完全地达到了150 g lss-1的水平。在微曝气发酵中,最大乙醇滴度为8%(v / v),最高乙醇生产率为1.5–2 g l -1 h -1 。本文介绍的结果强调,该菌株是从乳糖基原料生产乙醇的有趣替代品。

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