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Comparative study of a vitrinite-rich and an inertinite-rich Witbank coal (South Africa) using pyrolysis-gas chromatography

机译:热解-气相色谱法比较富镁质和富惰质性Witbank煤(南非)的研究

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This study aims to compare iso-rank vitrinite-rich and inertinite-rich coal samples to understand the impact of coal-forming processes on pyrolysis chemistry. A medium rank C bituminous coal was density-fractionated to create a vitrinite-rich and an inertinite-rich sub-sample. The vitrinite-rich sample has 83?vol% total vitrinite (mineral-matter-free basis), whereas the inertinite-rich counterpart has 66?vol% total inertinite. The vitrinite-rich sample is dominated by collotelinite and collodetrinite. Fusinite, semifusinite, and inertodetrinite are the main macerals of the inertinite-rich sample. Molecular chemistry was assessed using a pyrolysis gas chromatograph (py-GC) equipped with a thermal desorption unit coupled to a time of flight mass spectrometer (MS) (py-GC/MS) and solid-state nuclear magnetic resonance (~(13)C CP-MAS SS NMR). The pyrolysis products of the coal samples are generally similar, comprised of low and high molecular weight alkanes, alkylbenzenes, alkylphenols, and alkyl-subtituted polycyclic aromatic hydrocarbons, although the vitrinite-rich sample is chemically more diverse. The lack of diversity exhibited by the inertinite-rich sample upon pyrolysis may be interpreted to suggest that major components were heated in their geologic history. Based on the~(13)C CP-MAS SS NMR analysis, the inertinite-rich sample has a greater fraction of phenolics, reflected in the py-GC/MS results as substituted and unsubstituted derivatives. The greater abundance of phenolics for the inertinite-rich sample may suggest a fire-related origin for the dominant macerals of this sample. The C_(2)-alkylbenzene isomers ( p -xylene and o -xylene) were detected in the pyrolysis products for the vitrinite-rich and inertinite-rich samples, though more abundant in the former. The presence of these in both samples likely reflects common source vegetation for the dominant vitrinite and inertinite macerals.
机译:这项研究的目的是比较富含等等级镜质体和富含惰质体的煤样品,以了解成煤过程对热解化学的影响。对中等等级的C烟煤进行密度分级,以创建富含镜质石和富含惰质石的子样品。富含镜质的样品的总镜质含量为83%(体积)(不含矿物质),而富含惰质的样品的总惰质含量为66%(体积)。富含镜质的样品主要由软沸石和软锰矿组成。 Fusinite,Semifusinite和Inertodetrinite是富含Inertinite的样品的主要成分。使用配备有热脱附单元的热解气相色谱仪(py-GC)与飞行时间质谱仪(MS)(py-GC / MS)和固态核磁共振(〜(13) C CP-MAS SS NMR)。煤样品的热解产物通常是相似的,由低分子量和高分子量的烷烃,烷基苯,烷基酚和烷基取代的多环芳烃组成,尽管富含镜质石的样品在化学上更加多样化。富含惰质石的样品在热解过程中表现出的多样性不足可以解释为表明主要组分在其地质历史中曾受热。根据〜(13)C CP-MAS SS NMR分析,富含惰质石的样品中酚含量更高,在py-GC / MS结果中反映为取代和未取代的衍生物。富含惰铁石的样品中酚类化合物的含量较高,可能表明该样品的主要化学成分与火有关。在热解产物中检测到了C_(2)-烷基苯异构体(对二甲苯和邻二甲苯),富含镜质和富惰质的样品中,尽管前者含量较高。这两个样品中这些物质的存在可能反映了主要的镜质体和惰质微晶的共同来源。

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