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Organosolv pretreatments of rice straw followed by microbial hydrolysis for efficient biofuel production

机译:有机溶液预处理稻草,接着是微生物水解,以高效生物燃料生产

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The aim of this study is to optimize Organosolv pretreatment parameters for efficient lignin removal and polysaccharide release using response surface methodology based on central composite design. Organosolv pretreatment conditions (60-100 degrees C, 10-50 min and 50-90% acid concentration) were tested for maximum cellulose release and lignin solubilization and minimum hemicellulose decomposition. The optimum Organosolv pretreatment condition was achieved at an acid concentration of 69.85%, pretreatment time 29.68 min and pretreatment temperature of 75.41 degrees C. At optimal condition, 73.17% of lignin and 46.62% hemicellulose were solubilized, and 74.09% of cellulose was released. The high R squared and adjusted R squared values of 0.9801 and 0.9622 for lignin removal, 0.9831 and 0.9695 for cellulose released and 0.9851 and 0.9717 for hemicellulose solubilization shows that the quadratic models are adequate and the experimental data adequately fitted to the design model. Moreover, all the process parameters: temperature, time and concentration have a significant impact on the responses (disruption or depolymerization of rice straw biomass) where time had a very strong effect on the rice straw components (cellulose, lignin, and hemicellulose). The study demonstrated that the potential of the combination of Organosolv pretreatment and Bacillus sp. BMP01 hydrolysis of rice straw for enhancing sugar and ethanol yields. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本研究的目的是利用基于中央复合设计的响应面法优化有机溶胶预处理参数,用于使用响应面方法使用响应面方法。测试有机溶胶预处理条件(60-100℃,10-50分钟和50-90%的酸浓度)用于最高纤维素释放和木质素溶解和最小半纤维素分解。最佳有机溶胶预处理条件以69.85%的酸浓度,预处理时间29.68分钟,预处理温度为75.41℃。在最佳条件下,溶解73.17%的木质素和46.62%的半纤维素,释放74.09%的纤维素。对于木质素去除,0.9801和0.9622的高r平方和调节的R平方值为释放的纤维素0.9831和0.9695,用于半纤维素溶解的0.9851和0.9717表示,二次模型是足够的,并且适用于设计模型的实验数据。此外,所有过程参数:温度,时间和浓度对戒烟(稻草生物质的破坏或解聚)产生显着影响,其中时间对稻草组分(纤维素,木质素和半纤维素)产生非常强烈的影响。该研究表明,有机溶胶预处理和芽孢杆菌的组合的潜力。增强糖和乙醇产量的稻草BMP01水解。 (c)2019 Elsevier Ltd.保留所有权利。

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