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Effect of the combined physical and chemical treatments with microbial fermentation on corn straw degradation

机译:微生物发酵理化联合处理对玉米秸秆降解的影响

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摘要

In order to improve corn straw degradation, steam explosion, sodium hydroxide soaking and Aspergillus oryzae fermentation were used. The optimal sodium hydroxide pretreatment condition for lignin degradation was obtained. The degradation rates of hemicellulose, cellulose and lignin were 54.68%, 17.76% and 33.14% for the exploded straw (P<. 0.05); 67.92%, 2.44% (P. 0.05) and 76.54% for the alkali-treated straw (P<. 0.05); 75.98%, 39.93% and 77.88% for the exploded and alkali-treated straw (P<. 0.05), respectively. The following microbial fermentation could degrade hemicellulose and cellulose further (P<. 0.05). Cellulase, amylase and protease activities produced during microbial fermentation in the pretreated corn straw were lower than that in the untreated one (P<. 0.05); however, glucose content was increased by microbial fermentation (P<. 0.05). It can be concluded that the combined treatments of steam explosion, sodium hydroxide and microbial fermentation will be a good method for straw degradation.
机译:为了改善玉米秸秆的降解,使用了蒸汽爆炸,氢氧化钠浸泡和米曲霉发酵。获得了木质素降解的最佳氢氧化钠预处理条件。爆炸秸秆的半纤维素,纤维素和木质素的降解率分别为54.68%,17.76%和33.14%(P <0.05)。碱处理过的稻草为67.92%,2.44%(P. 0.05)和76.54%(P <.0.05);爆炸秸秆和碱处理秸秆的分解率分别为75.98%,39.93%和77.88%(P <0.05)。随后的微生物发酵可进一步降解半纤维素和纤维素(P <0.05)。预处理的玉米秸秆在微生物发酵过程中产生的纤维素酶,淀粉酶和蛋白酶活性低于未处理的秸秆(P <。0.05)。然而,通过微生物发酵增加了葡萄糖含量(P <0.05)。可以得出结论,蒸汽爆炸,氢氧化钠和微生物发酵的组合处理将是秸秆降解的良好方法。

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