21 / 2023-05-14 11:24:08
Influence law and failure mechanism of adsorbed gas on coal microcrystal structure
Coal; Gas; Microcrystalline structure; Molecular dynamics simulation
Draft Accepted
Weining Che / China University of Mining and Technology-Beijing
Junqing Meng / China University of Mining and Technology-Beijing
Chunhui Lyu / China University of Mining and Technology; Beijing
Exploring the influence laws and failure mechanisms of adsorbed gas on the microcrystalline structure of coal is helpful to prevent gas accidents in coal mines. Five kinds of coal samples were studied by elemental analysis, solid-state 13C nuclear magnetic resonance, X-ray photoelectron spectroscopy, X-ray diffraction, isothermal adsorption experiments, and molecular dynamics simulation. The results showed that adsorbed methane destroyed the microcrystalline structure of coal, decreased the ductility La, and increased the aromatic layer interlayer spacing d002. On the one hand, methane molecules need to absorb heat to maintain diffusion movement, which is provided by the release of coal molecules. The energy of coal molecules decreased, which made the order of microcrystalline structure decrease and the aromatic lamellae twist. On the other hand, the methane molecules preferentially adsorbed on the aromatic structure, which led to an increase in intermolecular force and collision probability between them. And methane molecules move in Knudsen diffusion between aromatic layers. This led to a large-amplitude twisting of the aromatic structure in the microcrystalline structure and a loosening of the aromatic ring arrangement.

 
Important Date
  • Conference Date

    Aug 18

    2023

    to

    Aug 20

    2023

  • Jul 07 2023

    Draft paper submission deadline

  • Aug 20 2023

    Registration deadline

Sponsored By
International Committee of Mine Safety Science and Engineering
Organized By
Heilongjiang University of Science and Technology
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