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Biological pretreatment of corn straw for enhancing degradation efficiency and biogas production

机译:玉米秸秆的生物预处理,提高降解效率和沼气生产

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In order to explore the effect of pretreatment on corn straw degradation and biogas production, corn straw was pretreated with mixed microbes and composting at 30°C for 14?days. The characteristics of material were measured and analyzed in the pretreatment process. Then, the pretreated and untreated corn straw was digested by anaerobic fermentation. Gas production and methane content of corn straw were analyzed. The results showed that the biological pretreatment process with mixed microbes could accelerate the degradation rate of straw and increase the degradation efficiency of lignin. The pH value of material was more stable, and the content of organic matter in the material was higher in the pretreatment process of corn straw with mixed microbes. The Scanning Electron Microscope (SEM) images showed that the structure of the lignocellulose was changed by mixed microbes, increasing the exposed area of cellulose and hemicellulose, which was beneficial to improve the utilization efficiency of straw. The degradation rates of hemicellulose, cellulose and lignin were 44.4%, 34.9% and 39.2%, respectively, after the pretreatment process with mixed microbes. Pretreatment was more helpful to increase the methane content in the anaerobic fermentation process of corn straw pretreated with mixed microbes, and could also shorten the fermentation period.
机译:为了探讨预处理对玉米秸秆降解和沼气产生的影响,用混合微生物预处理玉米秸秆并在30℃下堆肥14天。在预处理过程中测量并分析材料的特征。然后,通过厌氧发酵消化预处理和未处理的玉米秸秆。分析了玉米秸秆的气体生产和甲烷含量。结果表明,混合微生物的生物预处理方法可以加速秸秆的降解率,提高木质素的降解效率。材料的pH值更稳定,材料中有机物质的含量在玉米秸秆的预处理过程中较高,用混合微生物。扫描电子显微镜(SEM)图像显示木质纤维素的结构通过混合微生物改变,增加纤维素和半纤维素的暴露区域,这有利于提高吸管的利用效率。在用混合微生物的预处理过程中,半纤维素,纤维素和木质素的降解率分别为44.4%,34.9%和39.2%。预处理更有助于增加用混合微生物预处理的玉米秸秆的厌氧发酵过程中的甲烷含量,也可以缩短发酵期。

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