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Chemical Characteristics and Ethanol Fermentation of the Cellulose Component in Autohydrolyzed Bagasse

机译:自水解蔗渣中纤维素成分的化学特性和乙醇发酵

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The chemical characteristics, enzymatic saccharification, and ethanol fermentation of autohydrolyzed lignocellulosic material that was exposed to steam explosion were investigated using bagasse as the sample. The effects of the steam explosion on the change in pH, organic acids production, degrees of polymerization and crystallinity of the cellulose component, and the amount of extractive components in the autohydrolyzated bagasse were examined. The steam explosion decreased the degree of polymerzation up to about 700 but increased the degree of crystallinity and the micelle width of the cellulose component in the bagasse. The steam explosion, at a pressure of 2.55 MPa for 3 mins, was the most effective for the delignification of bagasse. 40 g/L of glucose and 20 g/L of xylose were produced from 100 g/L of the autohydrolyzed bagasse by the enzymatic saccharification using mixed cellulases, acuce-lase and meicelase. The maximum ethanol concentration, 20 g/L, was obtained from the enzymatic hydrolyzate of 100 g/L of the autohydrolyzed bagasse by the ethanol fermentation using Pichia stipitis CBS 5773; the ethanol yield from sugars was 0.33 g/g sugars.
机译:以甘蔗渣为样品,研究了暴露于蒸汽爆炸的自水解木质纤维素材料的化学特性,酶促糖化和乙醇发酵。检查了蒸汽爆炸对pH值变化,有机酸产生,纤维素组分的聚合度和结晶度以及自水解甘蔗渣中提取组分含量的影响。蒸汽爆炸将聚合度降低至约700,但增加了结晶度和甘蔗渣中纤维素组分的胶束宽度。蒸汽爆炸在2.55 MPa的压力下持续3分钟,对甘蔗渣的脱木质素作用最有效。通过使用混合纤维素酶,丙烯酸酯酶和葡聚糖酶的酶促糖化作用,由100 g / L的自水解甘蔗渣制得40 g / L的葡萄糖和20 g / L的木糖。通过使用毕赤酵母CBS 5773进行乙醇发酵,从100 g / L的自水解甘蔗渣的酶解物中获得最大乙醇浓度20 g / L。糖的乙醇产量为0.33 g / g糖。

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