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Impact of Fluid Velocity on Hot Water Only Pretreatment of Corn Stover in a Flowthrough Reactor

机译:流体速度对流通式反应器中玉米秸秆仅热水预处理的影响

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Flowthrough pretreatment with hot water only offers many promising features for advanced pretreatment of biomass,and a better understanding of the mechanisms responsible for flowthrough behavior could allow researchers to capitalize on key attributes while overcoming limitations.In this study,the effect of fluid velocity on the fate of total mass,hemicellulose,and lignin was evaluated for hot water only pretreatment of corn stover in tubular flowthrough reactors.Increasing fluid velocity significantly accelerated solubilization of total mass,hemicellulose,and lignin at early times.For example,when fluid velocity was increased from 2.8 to 10.7 cm/min,xylan removal increased from 60 to 82% for hot water only pretreatment of corn stover at 200 deg C after 8 min.At the same time,lignin removal increased from 30 to 46%.Dissolved hemicellulose was almost all in oligomeric form,and solubilization of hemicellulose was always accompanied by lignin release.The increase in removal of xylan and lignin with velocity,especially in the early reaction stage,suggests that chemical reaction is not the only factor controlling hemicellulose hydrolysis and that mass transfer and other physical effects may also play an important role in hemicellulose and lignin degradation and removal.
机译:热水流通法预处理仅提供许多有前途的生物质预处理功能,对流通行为的机理的更好理解可以使研究人员在克服局限性的同时充分利用关键属性。仅在管状流通式反应器中对玉米秸秆进行热水预处理时,对总质量,半纤维素和木质素的去向进行了评估。增加流速会在早期显着加速总质量,半纤维素和木质素的溶解。例如,当流速增加时从2.8到10.7 cm / min,仅在200摄氏度下对玉米秸秆进行热水处理8分钟后,木聚糖的去除率从60%增加到82%。同时,木质素的去除率从30%增加到46%。溶解的半纤维素几乎都是寡聚形式,半纤维素的溶解总是伴随着木质素的释放。木聚糖和锂的去除率增加随着速度的增加,尤其是在反应初期,化学反应不是控制半纤维素水解的唯一因素,而且传质和其他物理作用也可能在半纤维素和木质素的降解和去除中起重要作用。

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