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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >The effects of fibrolytic enzymes, cellulolytic fungi and bacteria on the fermentation characteristics, structural carbohydrates degradation, and enzymatic conversion yields of Pennisetum sinese silage
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The effects of fibrolytic enzymes, cellulolytic fungi and bacteria on the fermentation characteristics, structural carbohydrates degradation, and enzymatic conversion yields of Pennisetum sinese silage

机译:纤维溶解酶,纤维素溶解真菌和细菌对彭尼斯北体青贮饲料的发酵特性,结构碳水化合物降解和酶促转化产量的影响

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摘要

Biological inoculants were tested on Pennisetum sinese for their effects on fermentation characteristics, structural carbohydrates degradation, and enzymatic conversion yields. Pennisetum sinese was ensiled without additive, Lactobacillus plantarum (Lp), Trichoderma reesei (Tr), fibrolytic enzymes (E), and Enterococcus faecium (Y83) for 90 days. Y83 silages had higher LA and lower AA, ammonia-N and DM loss as compared to E and Tr silages. Tr and E had superior effects for degrading lignocellulose while Y83 had intermediate effects. The first-order exponential decay models (R-2 = 0.928-0.998) predicted nonstructural carbohydrates kinetics and demonstrated high water soluble carbohydrate (g/kg DM) preservation potential in Y83 (21.40), followed by Tr (18.94) and E (16.74). Addition of Y83 improved the conversion efficiency of P. sinese silage than Tr and E, indicated by higher glucose and total reducing sugars yield (22.49 and 36.89 w/w % DM, respectively). In conclusion, Y83 can be exploited for the ensiling lignocellulosic biomass before grass processing.
机译:在Pennisetum Sinese上测试了生物偶植剂,用于它们对发酵特征,结构碳水化合物降解和酶转化率产生的影响。没有添加剂,乳酸杆菌(LP),Trichoderma Reesei(TR),纤维解酶(E)和肠球菌饲料(Y83),乳酸杆菌菌株(LP),纤维溶解酶(e),90天。与E和TR银件相比,Y83青贮饲料较高,氨-N和DM损耗。 TR和E对降解木质纤维素具有优异的效果,而Y83具有中间效应。一阶指数衰减模型(R-2 = 0.928-0.998)预测非结构碳水化合物动力学,并证明了Y83(21.40)中的高水溶性碳水化合物(G / kg DM)保存电位,其次是TR(18.94)和E(16.74 )。添加Y83改善了P. Sinese Silage的转化效率而不是Tr和E,由更高的葡萄糖和总还原糖产量(分别为22.49和36.89w / w%dm)。总之,y83可以在草地加工前剥夺酶木质纤维素生物量。

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