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Simulation of Structural Relaxation of Coal Aggregates Using the Molecular Dynamics Calculation

机译:利用分子动力学计算模拟煤聚集体的结构松弛

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A molecular dynamics (MD) computer simulation method was used to study the structural relaxation behaviors by heat treatment for Upper Freeport coal (Argonne Premium Coal Sample) and its two fractions obtained from solvent extraction and fractionations. The calculation was carried out at 373 ― 723 K, in order to see changes in various properties by heat. For the extract fractions (acetone-insoluble and pyridine-soluble (PS) and pyridine-insoluble and mixed solvent soluble (PI) fractions), the temperature at which the average volume of unit cell discontinuously changed was observed. The DSC thermograms of PS and PI showed a reversible endothermic peak at 623 - 713 K and 673 - 713 K, respectively, corresponding to the temperature ranges in which the structural relaxation was estimated by simulation. While, for the raw coal an irreversible endothermic peak was observed around at 623 K on the DSC thermogram. The simulation suggested that irreversible structural changes have occurred during heating, which results from thermal stabilization of anisotropic structure of the raw coal.
机译:使用分子动力学(MD)计算机仿真方法来研究通过对溶剂萃取和分馏获得的上自由口煤(Argonne Premium煤样)的热处理结构松弛行为及其两种级分。计算在373-723k,以通过热量观察各种性质的变化。对于提取物级分(丙酮 - 不溶性和吡啶 - 可溶性(PS)和吡啶 - 不溶性和混合溶剂可溶性(PI)级分),观察到不连续变化不连续变化的平均体积的温度。 PS和PI的DSC热图在623-713K和673-713K分别显示了可逆吸热峰,对应于通过模拟估计结构松弛的温度范围。虽然,对于原煤,在DSC热法测定的623K下观察到不可逆吸热峰。模拟表明,加热过程中发生了不可逆的结构变化,这是由原煤各向异性结构的热稳定产生的。

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