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Steam explosion of oilseed rape straw: Establishing key determinants of saccharification efficiency

机译:油菜秸秆的蒸汽爆炸:确定糖化效率的关键因素

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Oilseed rape straw was steam exploded into hot water at a range of severities. The residues were fractionated into solid and liquid phases and chemically characterised. The effect of steam explosion on enzymatic hydrolysis of the water-insoluble fractions was investigated by studying initial cellulase binding and hydrolysis yields for different cellulase doses. Time-course data was modelled to establish ratedependent differences in saccharification as a function of pretreatment severity and associated chemical composition. The study concluded: (1) the initial hydrolysis rate was limited by the amount of (pectic) uronic acid remaining in the substrate; (2) the proportion of rapidly hydrolysable carbohydrate was most closely and positively related to lignin abundance and (3) the final sugar yield most closely related to xylan removal from the substrate. Comparisons between milled and un-milled steam exploded straw highlighted the influence that physical structure has on hydrolysis rates and yields, particularly at low severities.
机译:将油菜籽秸秆以一定程度的蒸汽蒸汽炸成热水。将残余物分馏成固相和液相并进行化学表征。通过研究不同纤维素酶剂量下的初始纤维素酶结合和水解产率,研究了蒸汽爆炸对水不溶部分的酶水解的影响。对时程数据进行建模,以建立糖化速率相关的差异,该差异取决于预处理的严重程度和相关的化学成分。研究得出结论:(1)初始水解速率受基质中残留的(果胶)糖醛酸含量限制; (2)快速水解碳水化合物的比例与木质素丰度最紧密正相关,(3)最终糖产量与从底物中去除木聚糖的关系最密切。碾碎的和未碾碎的蒸汽爆炸秸秆之间的比较突出了物理结构对水解速率和产量的影响,特别是在低强度下。

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