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首页> 外文期刊>Journal of thermal analysis and calorimetry >Influence of granularity on thermal behaviour in the process of lignite spontaneous combustion
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Influence of granularity on thermal behaviour in the process of lignite spontaneous combustion

机译:粒度对褐煤自燃过程中热行为的影响

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摘要

Granularity is one of the primary extrinsic factors that can influence the process of coal spontaneous combustion. Lignite was selected for studying the influence of granularity. A self-developed temperature-programmed oil bath experimental system was adopted to capture the changes in the spontaneous combustion characteristic parameters for different particle sizes. Moreover, the microcrystalline structure and functional group distribution of different granularities were obtained using an X-ray diffractometer and Fourier transform infrared spectrometer. The results show that the microcrystalline structure, the types of functional groups and the release order of gases of different granularities have equal influence during the process of coal spontaneous combustion. A smaller granularity has a lower aromatic group content and a higher content of high-activity hydroxyl groups, aliphatic hydrocarbons and oxygen-containing functional groups. Moreover, a smaller particle size results in a lower critical temperature. The distributions of coal granularity also affect the characteristic of coal spontaneous combustion. A wide particle size distribution produces a larger surface area for contact between coal and oxygen than a narrow distribution, which results in a coal with a stronger spontaneous combustion tendency.
机译:粒度是能够影响煤自燃过程的主要内在因素之一。选择褐煤来研究粒度的影响。采用自开发的温度编程的油浴试验系统来捕获不同颗粒尺寸的自发燃烧特性参数的变化。此外,使用X射线衍射仪和傅里叶变换红外光谱仪获得微晶结构和不同粒度的官能团分布。结果表明,微晶结构,官能团的类型和不同粒度气体的释放顺序在煤自燃过程中具有相同的影响。较小的粒度具有较低的芳族基团含量和较高的高活性羟基含量,脂族烃和含氧官能团。此外,较小的粒度导致临界温度较低。煤粒度的分布也影响了煤炭自燃的特征。宽粒度分布在煤和氧之间的接触产生较大的表面积,而不是狭窄的分布,这导致具有较强的自发燃烧趋势的煤。

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