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Effect of SC-CO2 pretreatment in increasing rice straw biomass conversion

机译:SC-CO2预处理对提高稻草生物量转化的影响

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Rice straw, pretreated with supercritical carbon dioxide (SC-CO2) at 10-30 MPa and 40-110 degrees C for 15-45 mm at a 1:1 g/g liquid: solid ratio, was analysed for glucose yield from enzymatic hydrolysis, main chemical composition, and supermolecular structure. Rice straw that was pretreated with SC-CO2 at 30 MPa and 110 degrees C for 30 min had a final glucose yield of 32.4 +/- 0.5%, compared with 27.7 +/- 0.5% for unpretreated straw, after enzymatic hydrolysis with a mixture of cellulose and beta-glucosidase. Unpretreated and pretreated rice straw differed in chemical composition, with SC-CO2 pretreatment removing some non-lignocellulose material. Scanning electron microscopy showed that pretreated rice straw had extensive anomalous porosity and lamellar structures. Also, SC-CO2 pretreatment rendered fibres relatively fluffy and soft, which enhanced cellulase enzymatic hydrolysis. (c) 2010 IAgrE
机译:分析了用超临界二氧化碳(SC-CO2)在10-30 MPa和40-110摄氏度下以1:1 g / g液:固比进行15-45 mm预处理的稻草的酶促水解产生的葡萄糖产量,主要化学成分和超分子结构。在用混合物进行酶水解后,用SC-CO2在30 MPa和110摄氏度下预处理30分钟的稻草的最终葡萄糖产率为32.4 +/- 0.5%,而未预处理的稻草的最终葡萄糖产率为27.7 +/- 0.5%纤维素和β-葡萄糖苷酶。未经预处理和经过预处理的稻草化学成分不同,SC-CO2预处理去除了一些非木质纤维素材料。扫描电子显微镜显示,预处理的稻草具有广泛的异常孔隙度和层状结构。同样,SC-CO2预处理使纤维相对蓬松和柔软,从而增强了纤维素酶的酶水解作用。 (c)2010年

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