“…Gao 8 established a coal macromolecule model through experiments and fully verified the applicability of reactive force field (ReaxFF) in simulated coal pyrolysis using thermogravimetric analysis. Zhao 9 used Grand Canonical Monte Carlo (GCMC) to simulate the effect of pore structures on the adsorption of water using a low-rank coal model and found that the adsorption of water in coal is positively correlated with fugacity, porosity and other factors. Sui 10 studied the simulation of adsorption of methane, CO 2 and other gases by modified silica, and found that different functional groups had great differences in the priority of gas adsorption.…”
To reveal the mechanism of CO gas generation and adsorption in coal gangue slits, a new composite kaolinite–coal–kaolinite (KCK) model was constructed by combining the HQL coal and kaolinite model to characterize the crack structure of the gangue.
“…Gao 8 established a coal macromolecule model through experiments and fully verified the applicability of reactive force field (ReaxFF) in simulated coal pyrolysis using thermogravimetric analysis. Zhao 9 used Grand Canonical Monte Carlo (GCMC) to simulate the effect of pore structures on the adsorption of water using a low-rank coal model and found that the adsorption of water in coal is positively correlated with fugacity, porosity and other factors. Sui 10 studied the simulation of adsorption of methane, CO 2 and other gases by modified silica, and found that different functional groups had great differences in the priority of gas adsorption.…”
To reveal the mechanism of CO gas generation and adsorption in coal gangue slits, a new composite kaolinite–coal–kaolinite (KCK) model was constructed by combining the HQL coal and kaolinite model to characterize the crack structure of the gangue.
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