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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >A catalytic biofuel production strategy involving separate conversion of hemicellulose and cellulose using 2-sec-butylphenol (SBP) and lignin-derived (LD) alkylphenol solvents
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A catalytic biofuel production strategy involving separate conversion of hemicellulose and cellulose using 2-sec-butylphenol (SBP) and lignin-derived (LD) alkylphenol solvents

机译:一种催化生物燃料生产策略,涉及使用2-仲丁基苯酚(SBP)和木质素衍生(LD)烷基苯酚溶剂分别转化半纤维素和纤维素

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摘要

A strategy in which the hemicellulose and cellulose fractions of lignocellulosic biomass are converted separately to jet fuel-range liquid hydrocarbon fuels (butene oligomers) through catalytic processes is developed. Dilute sulfuric acid (SA)-catalyzed pretreatment fractionates the first biomass into cellulose and hemicellulose-derived xylose, and these are then converted separately to levulinic acid (LA) using 2-sec-butylphenol (SBP) and lignin-derived (LD) alkylphenol solvents, respectively. LA is upgraded catalytically to butene oligomers via c-valerolactone (GVL) and butene intermediates. Separation subsystems are designed to recover the alkylphenol solvents and biomass-derived intermediates (LA and GVL) for combination with the catalytic conversion subsystems of hemicellulose, cellulose, and lignin. In addition, a heat exchanger network (HEN) design is presented to satisfy the energy requirements of the integrated process from combustion of biomass residues (degradation products). Finally, a technoeconomic analysis shows that the proposed process ($ 3.37/gallon of gasoline) is an economically competitive alternative to current biofuel production approaches. (C) 2016 Elsevier Ltd. All rights reserved.
机译:开发了一种策略,其中通过催化过程将木质纤维素生物质的半纤维素和纤维素部分分别转化为喷气燃料范围的液态烃燃料(丁烯低聚物)。稀硫酸(SA)催化的预处理将第一生物质分馏为纤维素和半纤维素衍生的木糖,然后分别使用2-仲丁基苯酚(SBP)和木质素衍生(LD)烷基酚将它们分别转化为乙酰丙酸(LA)。分别溶剂。 LA通过c-戊内酯(GVL)和丁烯中间体催化升级为丁烯低聚物。分离子系统设计用于回收烷基酚溶剂和生物质衍生的中间体(LA和GVL),以与半纤维素,纤维素和木质素的催化转化子系统结合使用。此外,提出了一种热交换器网络(HEN)设计,以满足生物质残渣(降解产物)燃烧所产生的集成过程的能源需求。最后,技术经济分析表明,所提出的工艺(每加仑汽油3.37美元)是当前生物燃料生产方法的经济竞争选择。 (C)2016 Elsevier Ltd.保留所有权利。

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