首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Modeling of biomass fractionation in a lab-scale biorefinery: Solubilization of hemicellulose and cellulose from holm oak wood using subcritical water
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Modeling of biomass fractionation in a lab-scale biorefinery: Solubilization of hemicellulose and cellulose from holm oak wood using subcritical water

机译:在实验室规模的生物精炼厂中对生物质分馏进行建模:使用亚临界水溶解圣栎木材中的半纤维素和纤维素

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Lignocellulose fractionation is a key biorefinery process that need to be understood. In this work, a comprehensive study on hydrothermal-fractionation of holm oak in a semi-continuous system was conducted. The aim was to develop a physicochemical model in order to reproduce the role of temperature and water flow over the products composition. The experiments involved two sets: at constant flow (6 mL/min) and two different ranges of temperature (140-180 and 240-280 degrees C) and at a constant temperature range (180-260 degrees C) and different flows: 11.0, 15.0 and 27.9 mL/min. From the results, temperature has main influence and flow effect was observed only if soluble compounds were produced. The kinetic model was validated against experimental data, reproducing the total organic carbon profile (e.g. deviation of 33%) and the physicochemical phenomena observed in the process. In the model, it was also considered the variations of molecular weight of each biopolymer, successfully reproducing the biomass cleaving. (C) 2015 Elsevier Ltd. All rights reserved.
机译:木质纤维素分级分离是关键的生物精炼过程,需要了解。在这项工作中,对半连续体系中圣栎的水热分离进行了综合研究。目的是开发一种物理化学模型,以重现温度和水在产品组成中的作用。实验涉及两组:恒定流量(6 mL / min)和两个不同温度范围(140-180和240-280摄氏度)和恒定温度范围(180-260摄氏度)和不同流量:11.0 ,15.0和27.9 mL / min。从结果来看,温度具有主要影响,并且只有在产生可溶性化合物的情况下才能观察到流动效应。根据实验数据验证了动力学模型,再现了总有机碳分布(例如,偏差为33%)和在此过程中观察到的物理化学现象。在模型中,还考虑了每种生物聚合物分子量的变化,成功地复制了生物质。 (C)2015 Elsevier Ltd.保留所有权利。

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