首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Efficient conversion of pretreated brewer's spent grain and wheat bran by submerged cultivation of Hericium erinaceus
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Efficient conversion of pretreated brewer's spent grain and wheat bran by submerged cultivation of Hericium erinaceus

机译:通过淹没血腥培养,高效转化预处理的酿酒厂的谷物和小麦麸皮

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摘要

Brewer's spent grain (BSG) and wheat bran (WB) are industrial byproducts that accumulate in millions of tons per year and are typically applied as animal feed. Since both byproducts show a great potential as substrates for fermentation, the approach developed in this study consists of utilizing these lignocellulosic byproducts for biomass production of the medicinal fungus Hericium erinaceus through submerged cultivation. To increase the biological efficiency of the bioconversion, acidic pretreatment was applied yielding a bioconversion of 38.6% for pretreated BSG and 34.8% for pretreated WB. This study shows that the complete degradation of (hemi) cellulose into monosaccharides was not required for an efficient bioconversion. The produced fungal biomass was applied in a second fermentation step to induce the secondary metabolite erinacine C production. Thus, biomass was produced as a functional food ingredient with erinacine C contents of 174.8 mg/g for BSG and 99.3 mg/g for WB based bioconversions. (C) 2016 Elsevier Ltd. All rights reserved.
机译:Brewer的谷物(BSG)和小麦麸皮(WB)是工业副产品,每年省数百万吨,通常用作动物饲料。由于副产物均显示出作为发酵底物的巨大潜力,因此本研究开发的方法包括利用这些木质纤维素副产物通过淹没培养来用于药用真菌的生物量产生。为了提高生物转化的生物效率,施加酸性预处理,得到38.6%的生物转化,预处理的BSG和预处理WB的34.8%。该研究表明,有效的生物转化不需要(Hemi)纤维素将(Hemi)纤维素完全降解到单糖中。将产生的真菌生物量应用于第二发酵步骤中,以诱导次级代谢物沸耳C的产生。因此,生物量被制备为具有174.8mg / g的Erinacine C含量的官能食品成分,BSG的174.8mg / g,对于基于WB的生物滤波器为99.3mg / g。 (c)2016 Elsevier Ltd.保留所有权利。

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