首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Ferulic acid esterase-producing lactic acid bacteria and cellulase pretreatments of corn stalk silage at two different temperatures: Ensiling characteristics, carbohydrates composition and enzymatic saccharification
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Ferulic acid esterase-producing lactic acid bacteria and cellulase pretreatments of corn stalk silage at two different temperatures: Ensiling characteristics, carbohydrates composition and enzymatic saccharification

机译:在两个不同温度下产生玉米秸秆青贮饲料的阿魏酸酯酶和纤维素酶预处理:酶组成,碳水化合物组成和酶糖化

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摘要

The effects of Acremonium cellulase and L. plantarum A1 with ferulic acid esterase activity on corn stalk silage fermentation characteristics, carbohydrate composition and enzymatic saccharification were studied at 25 and 40 degrees C, respectively. Corn stalk was ensiled without additive (C), Acremonium cellulase (AC), L. plantarum A1 (Lp) and AC + Lp for 60 days. Pretreatment with Lp or AC + Lp promoted the better silage fermentation and the degradation of lignocellulose as indicated by high lactic acid and low pH and lignocellulose content compared to control silages at 25 degrees C. AC + Lp performed better in reducing lignocellulose and DM loss. In addition, Lp alone enhanced enzymatic saccharification of corn stalk silage. However, the influence of L. plantarum A1 on corn stalk silage was not obvious at 40 degrees C. Corn stalk ensiled with combined additive is a suitable pretreatment method for subsequent biofuel production at 25 degrees C, but addition of Acremonium cellulase alone at 40 degrees C may be a promising method.
机译:在25℃和40℃下,研究了Actumium纤维素A和L.Purerarum A1对玉米酸酯酶活性,碳水化合物组合物和酶糖化的影响。没有添加剂(c),毒性纤维素酶(AC),L.Purerarum A1(LP)和AC + LP,玉米秸秆无需添加剂(C),60天。通过高乳酸和低pH和木质纤维素含量,在25摄氏度下表现优质性,促进了LP或AC + LP的预处理,如高乳酸和低pH和木质纤维素含量所示,如高乳酸和低pH和木质纤维素含量的降解。此外,LP单独增强玉米秸秆青贮饲料的酶促糖化。然而,L.Playarum A1对玉米茎青贮饲料的影响在40摄氏度下不明显是明显的。用组合添加剂玉米秸秆是一种合适的预处理方法,用于随后的生物燃料生产在25℃下,但仅在40度下单独添加毒性纤维素酶C可能是一个有希望的方法。

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