唐辉. 火成岩侵入条件下煤体微观结构变化研究[J]. 煤矿安全, 2022, 53(5): 46-49.
    引用本文: 唐辉. 火成岩侵入条件下煤体微观结构变化研究[J]. 煤矿安全, 2022, 53(5): 46-49.
    TANG Hui. Study on changes of coal microstructure under the condition of igneous rock intrusion[J]. Safety in Coal Mines, 2022, 53(5): 46-49.
    Citation: TANG Hui. Study on changes of coal microstructure under the condition of igneous rock intrusion[J]. Safety in Coal Mines, 2022, 53(5): 46-49.

    火成岩侵入条件下煤体微观结构变化研究

    Study on changes of coal microstructure under the condition of igneous rock intrusion

    • 摘要: 为了深入研究火成岩侵入对煤体氧化的影响规律,应用电子扫描镜、比表面积测定仪以及压汞仪对火成岩侵入前后的煤样进行试验研究,通过对比分析火成岩侵入前后煤样的扫描电镜图、比表面积以及孔容,研究火成岩侵入前后煤的微观结构变化和孔隙率变化规律。结果表明:火成岩侵入后煤样表面孔隙结构发生变化,孔隙率增大,吸附氧气的能力增强;煤分子结构发生变化,导致了火成岩侵入后的变质煤更容易被氧化,并且变质程度越大,氧化越容易。

       

      Abstract: In order to study the effect of igneous rock intrusion on coal oxidation, the electronic scanning mirror, specific surface area tester and pressure mercury meter are used to test the coal samples before and after the igneous rock intrusion, by comparing and analyzing the scanning electron microscope, specific surface area and pore volume of coal samples before and after igneous rock intrusion, the changes of microstructure and porosity of coal samples before and after igneous rock intrusion are studied. The results show that the pore structure of the coal sample changes after the igneous rock intrusion, the porosity increases, and the oxygen adsorption ability is enhanced; the change of coal molecular structure leads to the oxidation of metamorphic coal after igneous rock intrusion, and the greater the metamorphic degree, the easier the oxidation.

       

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