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含戊糖的亚硫酸盐废液发酵制乙醇

Fermentation to ethanol of pentose-containing spent sulphite liquor.

作者信息

Yu S, Wayman M, Parekh S K

机构信息

Department of Chemical Engineering and Applied Chemistry, University of Toronto, Toronto, Ontario, M5S 1A4.

出版信息

Biotechnol Bioeng. 1987 Jun;29(9):1144-50. doi: 10.1002/bit.260290915.

Abstract

Ethanolic fermentation of spent sulphite liquor with ordinary bakers' yeast is incomplete because this yeast cannot ferment the pentose sugars in the liquor. This results in poor alcohol yields, and a residual effluent problem By using the yeast Candida shehatae (R) for fermentation of the spent sulphite liquor from a large Canadian alcohol-producing sulphite pulp and paper mill, pentoses as well as hexoses were fermented nearly completely, alcohol yields were raised by 33%, and sugar removal increased by 46%. Inhibitors were removed prior to fermentation by steam stripping. Major benefits were obtained by careful recycling of this yeast, which was shown to be tolerant both of high sugar concentrations and high alcohol concentrations. When sugar concentrations over 250 g/L (glucose: xylose 70:30) were fermented, ethanol became an inhibitor when its concentration reached 90 g/L. However, when the ethanol was removed by low-temperature vacuum distillation, fermentation continued and resulted in a yield of 0.50 g ethanol/g sugar consumed. Further improvement was achieved by combining enzyme saccharification of sugar oligomers with fermentation. This yeast is able to ferment both hexoses and pentoses simultaneously, efficiently, and rapidly. Present indications are that it is well suited to industrial operations wherever hexoses and pentoses are both to be fermented to ethanol, for example, in wood hydrolysates.

摘要

用普通面包酵母对亚硫酸盐废液进行乙醇发酵是不完全的,因为这种酵母不能发酵废液中的戊糖。这导致酒精产量低,并产生残余废水问题。通过使用嗜杀假丝酵母(R)对加拿大一家大型酒精生产亚硫酸盐制浆造纸厂的亚硫酸盐废液进行发酵,戊糖和己糖几乎完全发酵,酒精产量提高了33%,糖去除率提高了46%。在发酵前通过蒸汽汽提去除抑制剂。通过小心回收这种酵母获得了主要益处,结果表明它既能耐受高糖浓度,也能耐受高酒精浓度。当发酵糖浓度超过250 g/L(葡萄糖:木糖70:30)时,乙醇浓度达到90 g/L时就会成为抑制剂。然而,当通过低温真空蒸馏去除乙醇时,发酵继续进行,消耗的每克糖可产生0.50 g乙醇的产量。通过将糖低聚物的酶糖化与发酵相结合实现了进一步改进。这种酵母能够同时高效、快速地发酵己糖和戊糖。目前的迹象表明,它非常适合在己糖和戊糖都要发酵成乙醇的任何工业操作中使用,例如在木材水解物中。

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