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Quantitative analysis of the aqueous fraction from the Fe-assisted hydrothermal liquefaction of oil palm empty fruit bunches

机译:油掌上果实束的Fe辅助水热液化水分分析

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Hydrothermal liquefaction is a promising candidate method for the conversion of biomass resources. To improve economic efficiency, the development of processes that utilize the water-soluble (WS) hydrothermal-liquefaction fraction is critical; consequently, a fundamental method for the analysis of the WS fraction is required. In this study, the quantitative analysis of the WS fraction obtained from the Fe-assisted hydrothermal liquefaction of oil palm empty fruit bunches was comprehensively investigated by combining various separation and analysis methods The volatile components of the WS fraction were analyzed by gas chromatography-mass spectrometry (GC-MS) and gas chromatography-flame ionization detection (GC-FID), and they were quantified using the relative response factors estimated by the effective carbon number method. Heavy components not detectable by GC were isolated by freeze-drying, and their elemental compositions, functional groups, and molecular-weight distributions were analyzed. The results reveal that the addition of Fe during hydrothermal liquefaction alters the types of compounds present in the WS fraction by a large extent, and increases the proportion of volatile compounds. The reactivity of the WS fraction in the zeolite-catalyzed cracking reaction was also investigated, which revealed that the volatile components of the WS fraction are efficiently converted into olefins.
机译:水热液化是一种有希望转换生物质资源的候选方法。为提高经济效率,利用水溶性(WS)水热液化级分的过程的发展是至关重要的;因此,需要一种用于分析WS分数的基本方法。在本研究中,通过组合各种分离和分析方法全面研究了从油棕榈空束的Fe辅助水液液化获得的WS分数的定量分析通过气相色谱 - 质谱法分析WS分数的挥发性组分(GC-MS)和气相色谱 - 火焰电离检测(GC-FID),并使用有效碳数法估计的相对响应因子量化。通过冷冻干燥分离GC不能检测到的重组分,分析它们的元素组合物,官能团和分子量分布。结果表明,在水热液化过程中加入Fe在很大程度上改变了WS分数中存在的化合物的类型,并增加了挥发性化合物的比例。还研究了沸石催化的裂化反应中的WS分数的反应性,显示WS级分的挥发性组分有效地转化为烯烃。

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