首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Single-step microwave-assisted hot water extraction of hemicelluloses from selected lignocellulosic materials - A biorefinery approach
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Single-step microwave-assisted hot water extraction of hemicelluloses from selected lignocellulosic materials - A biorefinery approach

机译:选定木质纤维素材料的单步微波辅助热水萃取半纤维素 - 一种生物颗粒状方法

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摘要

The viability of single-step microwave-induced pressurized hot water conditions for co-production of xylan-based biopolymers and bioethanol from aspenwood sawdust and sugarcane trash was investigated. Extraction of hemicelluloses was conducted using microwave-assisted pressurized hot water system. The effects of temperature and time on extraction yield and enzymatic digestibility of resulting solids were determined. Temperatures between 170-200 degrees C for aspenwood and 165-195 degrees C for sugarcane trash; retention times between 8-22 min for both feedstocks, were selected for optimization purpose. Maximum xylan extraction yields of 66 and 50%, and highest cellulose digestibilities of 78 and 74%, were attained for aspenwood and sugarcane trash respectively. Monomeric xylose yields for both feedstocks were below 7%, showing that the xylan extracts were predominantly in non-monomeric form. Thus, single-step microwave-assisted hot water method is viable biorefinery approach to extract xylan from lignocelluloses while rendering the solid residues sufficiently digestible for ethanol production. (C) 2017 Elsevier Ltd. All rights reserved.
机译:研究了单步微波诱导的加压热水条件的用于共生的基于木质的生物聚合物和来自阿斯替斯伍德锯末和甘蔗垃圾的生物乙醇的加压热水条件。使用微波辅助加压热水系统进行半纤维素的提取。测定温度和时间对萃取产率和所得固体酶消化率的影响。适用于阿斯康伍德的170-200摄氏度的温度和甘蔗垃圾的165-195℃;选择两种原料的8-22分钟之间的保留时间以进行优化目的。对于阿斯代伍德和甘蔗垃圾分别获得了66%和50%的最大木聚糖产量为66和50%,最高的纤维素消化率为78%和74%。两个原料的单体木聚糖产率低于7%,表明木聚糖提取物主要以非单体形式。因此,单步微波辅助热水方法是可行的生物填充方法,用于从木质纤维素中提取木聚糖,同时为乙醇生产充分消化的固体残留物。 (c)2017 Elsevier Ltd.保留所有权利。

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