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Characteristics of gas evolution profiles during coal pyrolysis and its relation with the variation of functional groups

机译:煤热解过程中气体逸出特征及其与官能团变化的关系

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Strict relation between the substituents or functional groups attached to the coal macromolecules and the generation of the volatile products, e.g., CH~(4), H~(2)O, CO, CO~(2), etc., during the coal pyrolysis is an important but confusing subject. In this paper, quadrupole mass spectrometry, gas chromatography, and_(13)C nuclear magnetic resonance are applied to real-time monitoring the formations of volatile products, off-line quantitative determination of the total products from the pyrolysis of a sub-bituminous coal (SC), and the changes of diverse substitents in the SC along with coke foamation, respectively. These measurements are also performed for the pyrolysis of a caking coal to contrast SC. The qualitative and quantitative data reveal that, during coal pyrolysis, the functional groups related with the formation of CO, i.e., ether, carbonyl, and anhydride, can directly generate CO via bond breaking, or take a detour of the formation of other intermediates via condensation and recombination firstly. Moreover, the formations of CO~(2)and CH~(4)are related to the direct removal of -COO- and -CH~(3), respectively.
机译:煤中附着在煤大分子上的取代基或官能团与挥发性产物(如CH〜(4),H〜(2)O,CO,CO〜(2)等)的生成之间存在严格的关系热解是一个重要但令人困惑的话题。本文采用四极质谱,气相色谱法和_(13)C核磁共振技术实时监测挥发性产物的形成,离线定量测定亚烟煤的热解产物总量(SC),以及SC中各种替代物的变化以及焦炭的发泡。还对粘结煤的热解以对比SC进行了这些测量。定性和定量数据表明,在煤热解过程中,与CO形成有关的官能团(即醚,羰基和酸酐)可以通过键断裂直接生成CO,或绕开其他中间体的形成过程。首先进行缩合和重组。而且,CO〜(2)和CH〜(4)的形成分别与-COO-和-CH〜(3)的直接去除有关。

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