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首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Integrative process for a sugarcane bagasse biorefinery to produce glucose, bio-oil and carbon microspheres
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Integrative process for a sugarcane bagasse biorefinery to produce glucose, bio-oil and carbon microspheres

机译:甘蔗甘蔗渣生物料理生产葡萄糖,生物油和碳微球的一致方法

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Selective fractionation of cellulose from sugarcane bagasse (SCB) for the production of fermentable sugars was studied. The SCB was pretreated by hydrothermal pretreatment using five different types of solid acid catalysts (SACs): (1) self-synthesis SiO2-OSO3H, (2) SO42-/TiO2/Fe3O4/WO3, (3) sulfonated bentonite and commercial SAC, (4) Amberlyst 15, and (5) Dowex 50WX8. Fractionation of SCB was conducted in a combination with choline acetate (ChOAc) ionic liquid (IL) at moderate temperature. After enzyme hydrolysis, the highest total reducing sugar (TRS) yield of 78.1% was achieved when pretreated with SiO2-OSO3H. For the black liquor from fractionation, the highest amount of lignin could be precipitated from ChOAc IL through treatment with SO42-/TiO2/Fe3O4/WO3. Pyrolysis of dry precipitated lignin was performed at 400 and 500 degrees C under a nitrogen atmosphere, and phenolic-rich oil was produced. Carbon microspheres appeared in the solid phase from the pyrolysis. It was postulated that lignin was first degraded to phenol with an aromatic structure, while other sugar residues (C5 and C6) in the lignin molecule formed ring compounds. These compounds underwent condensation polymerization as a shell-like shape, and carbon rich microspheres were thus formed. (C) 2018 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:研究了来自甘蔗蛋白(SCB)的纤维素的选择性分馏,用于生产可发酵的糖。使用五种不同类型的固体酸催化剂(囊)通过水热预处理进行预处理SCB:(1)自合成SiO 2-OSO3H,(2)SO42- / TiO2 / Fe 3 O 4 / WO3,(3)磺化膨润土和商业囊(4)Amberlyst 15,和(5)Dowex 50WX8。在中等温度下以与胆碱(CHOAc)离子液体(IL)的组合进行SCB的分馏。在酶水解后,在用SiO 2-OSO3H预处理时,可以获得最高总还原糖(TRS)产率为78.1%。对于从分馏中的黑液,通过用SO42- / TiO2 / Fe 3 O 4 / WO3的处理,可以从CHOAC IL沉淀出最高量的木质素。在氮气氛下在400和500℃下进行干沉淀的木质素的热解,制备富含酚醛的油。碳微球出现在从热解中的固相中。假设木质素首先使木质素降解为具有芳族结构的苯酚,而木质素分子中的其他糖残基(C5和C6)形成环化合物。这些化合物接受缩聚为壳状形状,由此形成碳富碳微球。 (c)2018化学工程师机构。 elsevier b.v出版。保留所有权利。

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