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Comparative studies on hydrothermal pretreatment and enzymatic saccharification of leaves and internodes of alamo switchgrass

机译:阿拉莫柳枝switch叶片和节间水热预处理和酶促糖化的比较研究

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Hydrothermal pretreatment was performed on the leaves and internodes portions of Alamo switchgrass, Panicum virgatum L., to enhance the digestibility of cellulose towards cellulase. It was observed that extractives free leaves portion provided 18.1% lower pretreatment gravimetrical yield and 33.8% greater cellulose-to-glucose yield than internodes portion. The degree of polymerization (DP) and ultrastructure of cellulose were determined by gel-permeation chromatography and solid-state cross polarization/magic angle spinning ~(13)C NMR experiments. The results suggested that hydrothermal pretreatment hydrolyzed amorphous cellulose and yielded a product enriched in paracrystalline cellulose. Furthermore, the DP of cellulose was reduced to one third of the origin value after hydrothermal pretreatment. The resulting biomass after pretreatment for leaves and internodes has similar cellulose ultrastructure and chemical profiles. The results of the enzymatic hydrolysis studies of cellulose suggest that the reduced DP of cellulose of pretreated switchgrass was an important factor influencing the enhanced digestibility of pretreated switchgrass.
机译:对Alamo Switchgrass Panicum virgatum L.的叶片和节间部分进行水热预处理,以增强纤维素对纤维素酶的消化率。观察到,与节间部分相比,无叶提取物部分的预处理重量法产率低18.1%,纤维素-葡萄糖产率高33.8%。通过凝胶渗透色谱法和固态交叉极化/魔角旋转〜(13)C NMR实验确定纤维素的聚合度(DP)和超微结构。结果表明,水热预处理水解了无定形纤维素并产生了富含顺结晶纤维素的产物。此外,在水热预处理之后,纤维素的DP降低到原始值的三分之一。叶片和节间预处理后得到的生物质具有相似的纤维素超微结构和化学特性。纤维素酶水解研究的结果表明,预处理柳枝cellulose纤维素的DP降低是影响预处理柳枝digest消化率提高的重要因素。

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