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Characterisation of model compounds and a synthetic coal by TG/MS/FTIR to represent the pyrolysis behaviour of coal

机译:TG / MS / FTIR表征模型化合物和合成煤,以表征煤的热解行为

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摘要

Coal pyrolysis is the initial, accompanying reaction of a number of coal conversion processes such as hydrogenation, combustion and gasification. However, because of the inherent complexity of coal composition, it is difficult to describe coal pyrolysis clearly. Single model compounds have been used before in order to provide additional insight into the complex processes that occur in the pyrolysis of coal. Yet the picture obtained is a simplified one and certain important aspects such as coal structure, interactions between different surface groups and cross-links are omitted. The approach used in this work involves the preparation of a synthetic coal, SC, with a known structure by curing a mixture of single, well-defined model compounds. By means of chemical characterisation, the SC was shown to contain the macroscopic features of a high volatile coal (proximate and ultimate analyses). FTIR characterisation revealed the presence of functional groups similar to those of coal in the structure of the SC. Temperature-programmed pyrolysis tests were performed in a thermobalance linked to a mass spectrometer and a Fourier transform infrared analyser (TG/MS/FTIR). The thermal behaviour of the synthetic coal (i.e., rate of mass loss and the evolution profiles of gaseous compounds during pyrolysis tests) is very similar to that of the high volatile bituminous coal which was used as a reference material. The great advantage of using SC lies in the fact that its composition and structure can be accurately determined and employed in subsequent applications in basic and mechanistic studies.
机译:煤热解是许多煤转化过程(如加氢,燃烧和气化)的初始伴随反应。然而,由于煤成分的内在复杂性,很难清楚地描述煤的热解。以前使用单一模型化合物是为了提供对煤炭热解中发生的复杂过程的更多了解。然而,所获得的图像只是一个简化的图像,并且某些重要方面(例如煤结构,不同表面基团之间的相互作用和交联)被省略。这项工作中使用的方法涉及通过固化单一的,定义明确的模型化合物的混合物来制备具有已知结构的合成煤SC。通过化学表征,显示出SC包含高挥发性煤的宏观特征(近似分析和最终分析)。 FTIR表征表明在SC的结构中存在与煤相似的官能团。在与质谱仪和傅立叶变换红外分析仪(TG / MS / FTIR)连接的热天平中进行了程序编程的热解测试。合成煤的热行为(即热解试验期间的质量损失率和气态化合物的逸出曲线)与用作参考材料的高挥发性烟煤非常相似。使用SC的最大优势在于,可以准确确定其成分和结构,并将其用于基础和机理研究的后续应用中。

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