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Molecular simulation of methane adsorption in aluminophosphate molecular sieve AlPO4-11

机译:铝磷酸盐分子筛AlPO4-11中甲烷吸附的分子模拟

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摘要

Grand canonical Monte Carlo (GCMC) technique is employed to simulate the adsorption of methane in aluminophosphate AlPO4-11 molecular sieve. Adsorption isotherms over the temperature range of 296-673 K are simulated and compared with the experimental data. Two steps occur in these isotherms, which represent different adsorbed phases. The minimum average total potential is existed in the whole adsorption process, which corresponds to the most stable state of the adsorption system and to the adsorbed phase with four methane molecules per unit cell. Methane molecules predominantly occupy the 10-member ring channels of AlPO4-11. The initial heat of adsorption for methane estimated by Henry constants is -20.5 kJ/mol, which is in agreement with experimental data. (c) 2006 Elsevier B.V. All rights reserved.
机译:采用大正则蒙特卡罗(GCMC)技术模拟甲烷在铝磷酸盐AlPO4-11分子筛中的吸附。模拟了在296-673 K温度范围内的吸附等温线,并将其与实验数据进行了比较。在这些等温线中发生两个步骤,代表了不同的吸附相。在整个吸附过程中存在最小的平均总电势,这对应于吸附系统的最稳定状态,并且对应于每个晶胞具有四个甲烷分子的吸附相。甲烷分子主要占据AlPO4-11的10元环通道。由亨利常数估计的甲烷的初始吸附热为-20.5 kJ / mol,与实验数据一致。 (c)2006 Elsevier B.V.保留所有权利。

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