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Effect of Steam Explosion Pretreatment and Microbial Fermentation on Degradation of Corn Straw

机译:蒸汽爆炸预处理和微生物发酵对玉米秸秆劣化的影响

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The effects of steam explosion (2.5 MPa, 200s) and Trichoderma koningii (T. koningii) fermentation on corn straw degradation were evaluated according to straw degradation and enzyme activity in the fermented products. The results showed that the steam explosion pre-treatment for corn straw could reduce the contents of cellose, hemicellulose and lignin by 8.47%, 50.45% and 36.65%, respectively (P<0.05). After the pretreated corn straw with steam explosion was fermented by T. koningii for 6 days, the contents of cellulose and hemicellulose in the fermented straw were decreased by 19.37% and 63.54%, compared with the original corn straw (P<0.05); decreased by 11.83% and 26.41%, compared with the exploded straw (P<0.05). The filter paper cellulase, CMCase and amylase activities in the fermented products were 356.39, 599.90 and 834.00 U/g, respectively. It is concluded that the corn straw pre-treated by steam explosion and followed by T. koningii fermentation for 6 days seems to be a new prospective method for corn straw degradation and application.
机译:根据稻草降解和在发酵产物的酶活性的蒸汽爆炸的影响(2.5兆帕,200S)和玉米秸秆降解康宁木霉(T.康宁)发酵进行了评价。结果表明,在蒸汽爆炸预处理玉米秸秆可以通过8.47%,50.45%和36.65%,分别为(P <0.05)降低cellose,半纤维素的含量和木质素。与蒸汽爆炸预处理的玉米秸秆由T.康宁6天发酵后,发酵稻草纤维素和半纤维素的内容物通过19.37%和63.54%降低,与原始玉米秸秆相比(P <0.05);减少了11.83%和26.41%,而分解稻草(P <0.05)。将滤纸纤维素酶,在发酵产物CMC酶和淀粉酶活性分别为356.39,分别599.90和834.00 U /克。结论:在玉米秸秆蒸汽爆破预处理和随后T.康氏木霉发酵6天似乎是玉米秸秆降解和应用一个新的预期方法。

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