College of Materials and Metallurgy, Northeastern University, Shenyang, China.
J Colloid Interface Sci. 2011 Sep 1;361(1):278-87. doi: 10.1016/j.jcis.2011.05.072. Epub 2011 May 31.
Using a grand canonical Monte Carlo simulation, we study argon adsorption in graphitic cylindrical pores to investigate the differences between the isosteric heat and the integral molar enthalpy under subcritical and supercritical conditions and compare these results against those for a flat graphite surface to investigate the role of confinement on the enthalpy change of adsorption. The isosteric heat curve is finite under subcritical conditions, but for supercritical adsorption, it becomes infinite at the pressure where the excess concentration versus pressure is maximum. This can be circumvented using the integral molar enthalpy, which is a better variable to describe the energy change for supercritical adsorption. Finally, the effects of pore geometry (radius and length) on argon adsorption under subcritical and supercritical conditions are discussed.
使用巨正则蒙特卡罗模拟,我们研究了亚临界和超临界条件下,在石墨圆柱孔中氩气的吸附,以研究等焓热和积分摩尔焓之间的差异,并将这些结果与平坦石墨表面的结果进行比较,以研究受限对吸附焓变化的作用。在亚临界条件下,等焓热曲线是有限的,但对于超临界吸附,在过剩浓度与压力之比最大的压力下,它变得无限大。可以使用积分摩尔焓来避免这种情况,因为积分摩尔焓是描述超临界吸附能量变化的更好变量。最后,讨论了亚临界和超临界条件下孔几何形状(半径和长度)对氩气吸附的影响。