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玉米醪液超高浓度乙醇发酵的特性。糖化酶用量、预糖化及酵母菌株的影响。

Characterization of very high gravity ethanol fermentation of corn mash. Effect of glucoamylase dosage, pre-saccharification and yeast strain.

作者信息

Devantier Rasmus, Pedersen Sven, Olsson Lisbeth

机构信息

Starch, Applied Discovery, Research and Development, Novozymes A/S, Bagsvaerd, Denmark.

出版信息

Appl Microbiol Biotechnol. 2005 Sep;68(5):622-9. doi: 10.1007/s00253-005-1902-9. Epub 2005 Oct 26.

Abstract

Ethanol was produced from very high gravity mashes of dry milled corn (35% w/w total dry matter) under simultaneous saccharification and fermentation conditions. The effects of glucoamylase dosage, pre-saccharification and Saccharomyces cerevisiae strain on the growth characteristics such as the ethanol yield and volumetric and specific productivity were determined. It was shown that higher glucoamylase doses and/or pre-saccharification accelerated the simultaneous saccharification and fermentation process and increased the final ethanol concentration from 106 to 126 g/kg although the maximal specific growth rate was decreased. Ethanol production was not only growth related, as more than half of the total saccharides were consumed and more than half of the ethanol was produced during the stationary phase. Furthermore, a high stress tolerance of the applied yeast strain was found to be crucial for the outcome of the fermentation process, both with regard to residual saccharides and final ethanol concentration. The increased formation of cell mass when a well-suited strain was applied increased the final ethanol concentration, since a more complete fermentation was achieved.

摘要

在同步糖化发酵条件下,以干磨玉米的高浓度醪液(总干物质含量为35% w/w)生产乙醇。测定了糖化酶用量、预糖化和酿酒酵母菌株对乙醇产量、体积产率和比生产率等生长特性的影响。结果表明,较高的糖化酶剂量和/或预糖化可加速同步糖化发酵过程,并将最终乙醇浓度从106 g/kg提高到126 g/kg,尽管最大比生长速率有所降低。乙醇产量不仅与生长有关,因为在稳定期消耗了超过一半的总糖类,产生了超过一半的乙醇。此外,发现所应用酵母菌株的高应激耐受性对于发酵过程的结果至关重要,这在残留糖类和最终乙醇浓度方面均如此。使用合适的菌株时细胞质量形成增加,从而提高了最终乙醇浓度,因为实现了更完全的发酵。

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