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Modelling adsorption of a water molecule into various pore structures of silica gel

机译:模拟水分子在硅胶的各种孔结构中的吸附

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Silica gel is widely used in commercial applications as a water adsorbent due to its properties including hydrothermally stable, high water sorption capacity, low regeneration temperature, low cost and wide range of pore diameters. Since the water sorption capacity of silica gel strongly depends on the pore size and structure, which can be controlled during synthesis, this paper study the effect of pore shapes and dimensions of silica gel upon the adsorption of a water molecule aiming at maximising the water sorption capacity. In particular, we consider three types of pore structures, namely cylindrical, square prismatic and conical pores. On using the Lennard-Jones potential and a continuum approximation, we find that the minimum radii for a water molecule to be accepted into cylindrical, square prismatic and conical pores are 4.009, 3.7898 and 4.4575 Å, respectively. For cylindrical and square prismatic pores, the critical radii which maximise the adsorption energy are 4.5189 and 4.1903 Å, respectively. Knowledge of these critical pore sizes may be useful for the manufacturing process of silica gel that will maximise the water sorption capacity.
机译:硅胶由于其性能包括水热稳定,高吸水能力,低再生温度,低成本和宽孔径范围,因此被广泛用作商业用途的吸水剂。由于硅胶的吸水能力强烈取决于合成过程中可控制的孔径和结构,因此本文研究了硅胶的孔径和尺寸对水分子吸附的影响,旨在最大程度地提高吸水率。容量。特别地,我们考虑三种类型的孔结构,即圆柱孔,方棱柱孔和圆锥孔。利用Lennard-Jones势和连续近似,我们发现圆柱,方棱柱形和圆锥形孔中接受的水分子的最小半径分别为4.009、3.7898和4.4575Å。对于圆柱形和方形棱柱形孔,使吸附能最大化的临界半径分别为4.5189和4.1903Å。这些临界孔径的知识对于硅胶的制造过程可能有用,它将最大程度地提高吸水能力。

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