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采用飞行时间质谱的全面二维气相色谱法对生物油进行化学特性分析。

Chemical characterization of bio-oils using comprehensive two-dimensional gas chromatography with time-of-flight mass spectrometry.

机构信息

Universidade Federal do Rio de Janeiro, Instituto de Química, Ilha do Fundão, Rio de Janeiro, RJ 21941-909, Brazil.

出版信息

J Chromatogr A. 2013 Mar 1;1279:68-75. doi: 10.1016/j.chroma.2012.12.052. Epub 2013 Jan 5.

Abstract

The liquid product obtained via the biomass flash pyrolysis is commonly called bio-oil or pyrolysis oil. Bio-oils can be used as sources for chemicals or as fuels, primarily in mixtures or emulsions with fossil fuels. A detailed chemical characterization of bio-oil is necessary to determine its potential uses. Such characterization demands a powerful analytical technique such as comprehensive two-dimensional gas chromatography coupled with time-of-flight mass spectrometry (GC×GC-TOFMS). Limited chemical information can be obtained from conventional gas chromatography coupled mass spectrometry (GC-MS) because of the large number of compounds and coelutions. Thus, GC×GC-TOFMS was used for the individual identification of bio-oil components from two samples prepared via the flash pyrolysis of empty palm fruit bunch and pine wood chips. To the best of our knowledge, few papers have reported comprehensive two-dimensional gas chromatography (GC×GC) for bio-oil analysis. Many classes of compounds such as phenols, benzenediols, cyclopentenones, furanones, indanones and alkylpyridines were identified. Several coelutions present in the GC-MS were resolved using GC×GC-TOFMS. Many peaks were detected for the samples by GC-MS (~166 and 129), but 631 and 857 were detected by GC×GC-TOFMS, respectively. The GC×GC-TOFMS analyses indicated that the major classes of components (analytes>0.5% relative area) in the two bio-oil samples are ketones, cyclopentenones, furanones, furans, phenols, benzenediols, methoxy- and dimethoxy-phenols and sugars. In addition, esters, aldehydes and pyridines were found for sample obtained from empty palm fruit bunch, while alcohols and cyclopentanediones were found in sample prepared from pine wood chips indicating different composition profiles due to the biomass sources. The elucidation of the composition of empty fruit bunch and pine wood chips bio-oils indicates that these oils are suitable for the production of value-added chemicals. The high quantity of phenol in the bio-oil of empty palm fruit bunch is of interest because phenol isolated from the bio-oil could provide an alternative to the phenol obtained from petroleum. The anhydrosugars found mainly in the bio-oil sample of pine wood chips can be isolated and fermented to produce ethanol or lipids. GC×GC-TOFMS can be used to increase the knowledge of the chemical composition of bio-oils allowing the improved usage of this attractive renewable energy source in bio-fuels.

摘要

通过生物质闪速热解获得的液体产物通常称为生物油或热解油。生物油可用作化学品的来源,也可用作燃料,主要是与化石燃料混合或乳化。为了确定其潜在用途,需要对生物油进行详细的化学特性分析。这种特性分析需要使用强大的分析技术,如全二维气相色谱与飞行时间质谱联用(GC×GC-TOFMS)。由于化合物数量众多且共洗脱,常规的气相色谱-质谱联用(GC-MS)只能获得有限的化学信息。因此,使用 GC×GC-TOFMS 对通过棕榈空果串和松木屑闪速热解制备的两个样品中的生物油成分进行了单独鉴定。据我们所知,很少有文献报道过用于生物油分析的全二维气相色谱(GC×GC)。鉴定出了许多类化合物,如酚类、苯二酚、环戊烯酮、呋喃酮、茚酮和烷基吡啶。使用 GC×GC-TOFMS 解决了 GC-MS 中存在的几个共洗脱问题。GC-MS 检测到两个样品中有许多峰(~166 和 129),但 GC×GC-TOFMS 分别检测到 631 和 857 个峰。GC×GC-TOFMS 分析表明,两个生物油样品中主要的成分类别(相对面积>0.5%的分析物)为酮类、环戊烯酮类、呋喃酮类、呋喃类、酚类、苯二酚类、甲氧基和二甲氧基酚类以及糖。此外,还发现了酯类、醛类和吡啶类化合物,这些化合物存在于空棕榈果串生物油中,而醇类和环戊二酮类化合物则存在于松木屑生物油中,这表明由于生物质来源的不同,它们的成分分布也不同。空果串和松木屑生物油的组成阐明表明,这些油适合生产高附加值化学品。空棕榈果串生物油中高含量的苯酚很有意义,因为从生物油中分离出的苯酚可以替代从石油中获得的苯酚。在主要存在于松木屑生物油样品中的无水糖可以被分离出来并发酵成乙醇或脂质。GC×GC-TOFMS 可用于增加对生物油化学成分的了解,从而改进这种有吸引力的可再生能源在生物燃料中的使用。

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