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通过碳水化合物酶和肽酶的联合作用对啤酒糟进行酶法溶解。

Enzymatic solubilization of brewers' spent grain by combined action of carbohydrases and peptidases.

作者信息

Treimo Janneke, Westereng Bjorge, Horn Svein J, Forssell Pirkko, Robertson James A, Faulds Craig B, Waldron Keith W, Buchert Johanna, Eijsink Vincent G H

机构信息

Department of Chemistry, Biotechnology and Food Science, Norwegian University of Life Sciences, N-1432 Aas, Norway.

出版信息

J Agric Food Chem. 2009 Apr 22;57(8):3316-24. doi: 10.1021/jf803310f.

Abstract

Brewers' spent grain (BSG), a high-volume coproduct from the brewing industry, primarily contains proteins, barley cell wall carbohydrates, and lignin. To create new possibilities for the exploitation of this large biomass stream, the solubilization of BSG by the combined action of carbohydrases (Depol 740 and Econase) and peptidase (Alcalase and Promod 439) was explored. Hydrolysis protocols were optimized with respect to temperature (influencing both microbial contamination and rate of enzymatic hydrolysis), pH, enzyme dose, order of enzyme addition, and processing time. On the basis of this approach, one- and two-step protocols are proposed taking 4-8 h and yielding combined or separate fractions of hydrolyzed oligosaccharides and liberated hydrolyzed protein. Optimized procedures resulted in the solubilization of >80% of the proteinaceous material, up to 39% of the total carbohydrates, and up to 42% of total dry matter in BSG. Of the original xylan present in BSG, 36% could be solubilized. Sequential and simultaneous treatments with the two enzyme types gave similar results. In sequential processes, the order of the carbohydrase and peptidase treatments had only minor effects on the outcome. Depol 740 released more pentoses than Econase and gave slightly higher overall dry matter solubilization yields.

摘要

啤酒糟(BSG)是啤酒酿造行业大量产生的副产品,主要包含蛋白质、大麦细胞壁碳水化合物和木质素。为了开发这种大量生物质流的新用途,研究了通过碳水化合物酶(Depol 740和Econase)和肽酶(Alcalase和Promod 439)的联合作用使BSG溶解的方法。针对温度(影响微生物污染和酶促水解速率)、pH值、酶剂量、酶添加顺序和处理时间对水解方案进行了优化。基于此方法,提出了4至8小时的一步法和两步法方案,可产生水解寡糖和释放的水解蛋白的混合或分离部分。优化后的程序使BSG中>80%的蛋白质物质、高达39%的总碳水化合物和高达42%的总干物质得以溶解。BSG中原本存在的木聚糖有36%可被溶解。两种酶类型的顺序处理和同时处理得到了相似的结果。在顺序处理过程中,碳水化合物酶和肽酶处理的顺序对结果影响较小。Depol 740释放的戊糖比Econase多,总体干物质溶解产率略高。

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