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Loop vs. batch reactor setups in the fractionation of birch chips using switchable ionic liquids

机译:使用可切换离子液体分馏桦木片时的环流与间歇式反应器设置

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摘要

The fractionation of lignocellulosic feedstock into its major components with high purity represents an important commercialization milestone in the transformation of lignocellulosic forest derived products into fuels and commodity chemicals. A comparison between the traditionally used batch reactor and loop reactor systems demonstrates that improved dissolution of hemicelluloses and lignin are obtained using switchable ionic liquids in a loop reactor system which facilitates decreased heat and mass transfer restrictions. The treatment of birch chips using switchable ionic liquid (SIL) based on 1,8-diazabicyclo-[5.4.0]-undec-7-ene, CO2 and diethanolamine at 120 °C for 30 h in a loop reactor resulted in 24% loss of original weight of wood corresponding to dissolution of 52 wt.% of hemicelluloses and 42 wt.% of lignin, respectively, as opposed to 20% weight loss corresponding to 43 wt.% dissolution of hemicelluloses and 38 wt.% of lignin in the batch system. The non-dissolved material obtained from both reactors was efficiently fibrillated and softened cellulose fibres. The flow of switchable ionic liquid through the loop reactor and agitation of the chips enhanced the dissolution of hemicelluloses and lignin. The dissolved fractions recovered from spent SIL after treatment contained both hemicelluloses and lignin.
机译:将木质纤维素原料分馏成高纯度的主要成分代表了木质纤维素森林衍生产品向燃料和商品化学品转化的重要商业化里程碑。在传统上使用的间歇式反应器和回路反应器系统之间的比较表明,在回路反应器系统中使用可切换的离子液体,可以改善半纤维素和木质素的溶解,这有助于减少传热和传质的限制。在循环反应器中,使用基于1,8-二氮杂双环-[5.4.0]-十一碳-7-烯,CO2和二乙醇胺的可转换离子液体(SIL)在120°C下处理桦木片30小时,产生24%木材的原始重量损失分别对应于52重量%的半纤维素和42重量%的木质素溶解,而20%的重量损失对应于43重量%的半纤维素和38重量%的木质素溶解。批处理系统。从两个反应器获得的未溶解材料均被有效地原纤化和软化了纤维素纤维。可切换离子液体通过回路反应器的流动以及芯片的搅拌增强了半纤维素和木质素的溶解。处理后从用过的SIL中回收的溶解级分同时包含半纤维素和木质素。

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