首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Comparative study of alkaline hydrogen peroxide and organosolv pretreatments of sugarcane bagasse to improve the overall sugar yield
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Comparative study of alkaline hydrogen peroxide and organosolv pretreatments of sugarcane bagasse to improve the overall sugar yield

机译:碱性过氧化氢与有机溶剂预处理甘蔗渣提高总糖产量的比较研究

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摘要

Green liquor (GL) combined with H2O2 (GL-H2O2) and green liquor (GL) combined with ethanol (GL-ethanol) were chosen for treating sugarcane bagasse. Results showed that the glucose yield (calculated from the glucose content as a percentage of the theoretical glucose available in the substrates) of sugarcane bagasse from GL-ethanol pretreatment (97.7%) was higher than that from GL-H2O2 pretreatment (41.7%) after 72 h hydrolysis with 18 filter paper unit (FPU)/g-cellulose for cellulase, 27,175 cellobiase units (CBU)/g-cellulose for beta-glucosidase. Furthermore, about 94.1% of xylan was converted to xylose after GL-ethanol pretreatment without additional xylanase, while the xylose yield was only 29.2% after GL-H2O2 pretreatment. Scanning electron microscopy showed that GL-ethanol pretreatment could break up the fiber severely. Moreover, GL-ethanol pretreated substrate was more accessible to cellulase and more hydrophilic than that of GL-H2O2 pretreated. Therefore, GL-ethanol pretreatment is a promising method for improving the overall sugar (glucose and xylan) yield of sugarcane bagasse. (C) 2015 Elsevier Ltd. All rights reserved.
机译:选择与H2O2(GL-H2O2)结合的绿液(GL)和与乙醇(GL-乙醇)结合的绿液(GL)处理甘蔗渣。结果表明,GL-乙醇预处理(97.7%)的甘蔗渣的葡萄糖产量(根据葡萄糖含量占基质中可用的理论葡萄糖的百分比计算)高于GL-H2O2预处理(41.7%)用18个滤纸单位(FPU)/ g-纤维素酶处理72小时水解,用27,175个纤维二糖酶单位(CBU)/ g-纤维素酶处理β-葡萄糖苷酶水解72小时。此外,在没有额外的木聚糖酶的情况下,GL-乙醇预处理后大约有94.1%的木聚糖被转化为木糖,而在GL-H2O2预处理之后,木糖的产率仅为29.2%。扫描电子显微镜显示,GL-乙醇预处理可严重破坏纤维。此外,与GL-H2O2预处理的底物相比,GL-乙醇预处理的底物更容易被纤维素酶吸收和亲水。因此,GL-乙醇预处理是提高甘蔗渣的总糖(葡萄糖和木聚糖)产量的一种有前途的方法。 (C)2015 Elsevier Ltd.保留所有权利。

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