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通过固态发酵接种白木霉分生孢子对甜菜渣进行蛋白质富集。

Protein enrichment of sugar beet residue with the inoculation of conidia of Trichoderma album by solid state fermentation.

作者信息

Yang S S, Durand A, Blachére H

出版信息

Zhonghua Min Guo Wei Sheng Wu Ji Mian Yi Xue Za Zhi. 1986 Feb;19(1):69-80.

PMID:3816356
Abstract

Cellulosic material was inoculated with Trichoderma album by solid state fermentation and the change of protein, total nitrogen, mineral nitrogen, cellulose and total fiber contents of raw material were measured. It was found that the water holding capacity and bulk density of substrate increased as the fermentation progressed. The optimum C/N ratio for the conidia production was between 4 and 7, and the optimum pH was around 5. The protein enrichment of sugar beet residue were the best at the initial moisture content 76%, initial pH 4.5 and supplement with 1% nitrogen. After 4 days fermentation, the final product contained 22% of protein. From the present state of technological development, the protein enrichment of cellulosic materials by solid state fermentation proved to be valuable.

摘要

通过固态发酵用白木霉接种纤维素材料,并测定原材料中蛋白质、总氮、矿质氮、纤维素和总纤维含量的变化。结果发现,随着发酵的进行,底物的持水能力和堆积密度增加。分生孢子产生的最佳碳氮比在4至7之间,最佳pH值约为5。在初始水分含量76%、初始pH值4.5和补充1%氮的条件下,甜菜渣的蛋白质富集效果最佳。发酵4天后,最终产物含有22%的蛋白质。从目前的技术发展状况来看,通过固态发酵对纤维素材料进行蛋白质富集被证明是有价值的。

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