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超临界 CO2 从麦草-铁杉生物量生产的生物油中分级分离。

Supercritical CO2 fractionation of bio-oil produced from wheat-hemlock biomass.

机构信息

Department of Chemical Engineering, University of Saskatchewan, Saskatoon, SK, Canada.

出版信息

Bioresour Technol. 2010 Oct;101(19):7605-13. doi: 10.1016/j.biortech.2010.04.024. Epub 2010 May 20.

Abstract

The biomass i.e. wheat-hemlock used in this study was first characterized for its composition. The physical and chemical characterization of biomass was estimated using proximate analysis, calorific value, crystallinity, devolatilization behaviour, ultimate analysis, ICP-MS of ash, FT-IR, XRD, CHNS, and HPLC analysis. For commercial purpose the same biomass was used for conversion to bio-oil by fast pyrolysis process. Therefore, in order to investigate its composition, the bio-oil was also characterized using proximate analysis, calorific value, whereas the chemical composition of the bio-oil was estimated using CHNS, (1)H NMR, GC-FID and GC/MS. The bio-oil obtained from wheat-hemlock biomass was supplied by Advanced Biorefinery Co. and after the analysis, its composition has been determined. It contains a mixture of hydrocarbons, pyranoids, furanoids, benzenoids and fatty acids/alcohols with 45% of water, which forms azeotrope with organic polar compounds. The supercritical CO(2) (SC-CO(2)) is an advanced method for selective extraction of valuable chemicals from bio-oil without solvent residue. The organic fraction of the bio-oil was isolated by SC-CO(2). It was observed that SC-CO(2) fractions collected at 10 and 25 MPa pressure were enriched with furanoids, pyranoids and bezenoids. Similarly the bio-oil was also fractionated by conventional column chromatographic method and the yields and chemical compositions were compared with fractionated bio-oil obtained using SC-CO(2).

摘要

本研究中使用的生物质(即小麦-毒芹)首先进行了成分特征描述。使用工业分析、热值、结晶度、挥发分行为、元素分析、灰分的 ICP-MS、FT-IR、XRD、CHNS 和 HPLC 分析来评估生物质的物理和化学特性。出于商业目的,相同的生物质用于通过快速热解过程转化为生物油。因此,为了研究其成分,还使用工业分析和热值对生物油进行了特征描述,而生物油的化学成分则使用 CHNS、(1)H NMR、GC-FID 和 GC/MS 进行了估计。从小麦-毒芹生物质中获得的生物油由先进生物炼制公司提供,在分析后,确定了其组成。它含有碳氢化合物、吡喃、呋喃、苯和脂肪酸/醇的混合物,其中 45%的水与有机极性化合物形成共沸物。超临界 CO(2)(SC-CO(2))是一种从生物油中选择性提取有价值化学品的先进方法,没有溶剂残留。通过 SC-CO(2)从生物油中分离出有机部分。观察到在 10 和 25 MPa 压力下收集的 SC-CO(2)馏分富含呋喃、吡喃和苯。同样,生物油也通过常规柱色谱法进行了分级,比较了使用 SC-CO(2)获得的分级生物油的产率和化学成分。

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