Matito-Martos I, Álvarez-Ossorio J, Gutiérrez-Sevillano J J, Doblaré M, Martin-Calvo A, Calero S
Department of Physical, Chemical and Natural Systems, University Pablo de Olavide, Sevilla 41013, Spain.
Phys Chem Chem Phys. 2015 Jul 21;17(27):18121-30. doi: 10.1039/c5cp02407b.
Molecular simulations have been used to investigate at the molecular level the suitability of zeolites with different topology on the adsorption, diffusion and separation of a nitrogen-sulfur hexafluoride mixture containing the latter at low concentration. This mixture represents the best alternative for the sulfur hexafluoride in industry since it reduces the use of this powerful greenhouse gas. A variety of zeolites are tested with the aim to identify the best structure for the recycling of sulfur hexafluoride in order to avoid its emission to the atmosphere and to overcome the experimental difficulties of its handling. Even though all zeolites show preferential adsorption of sulfur hexafluoride, we identified local structural features that reduce the affinity for sulfur hexafluoride in zeolites such as MOR and EON, providing exclusive adsorption sites for nitrogen. Structures such as ASV and FER were initially considered as good candidates based on their adsorption features. However, they were further discarded based on their diffusion properties. Regarding operation conditions for separation, the range of pressure that spans from 3 × 10(2) to 3 × 10(3) kPa was identified as the optimal to obtain the highest adsorption loading and the largest SF6/N2 selectivity. Based on these findings, zeolites BEC, ITR, IWW, and SFG were selected as the most promising materials for this particular separation.
分子模拟已被用于在分子水平上研究具有不同拓扑结构的沸石对含低浓度六氟化硫的氮 - 六氟化硫混合物的吸附、扩散和分离的适用性。这种混合物是工业中六氟化硫的最佳替代品,因为它减少了这种强大温室气体的使用。测试了多种沸石,目的是确定用于六氟化硫回收的最佳结构,以避免其排放到大气中,并克服其处理过程中的实验困难。尽管所有沸石都表现出对六氟化硫的优先吸附,但我们确定了一些局部结构特征,这些特征会降低诸如丝光沸石(MOR)和EON等沸石对六氟化硫的亲和力,为氮气提供了专属吸附位点。基于其吸附特性,诸如ASV和FER等结构最初被认为是很好的候选者。然而,基于它们的扩散特性,它们被进一步排除。关于分离的操作条件,确定压力范围为3×10²至3×10³ kPa是获得最高吸附负荷和最大六氟化硫/氮气选择性的最佳条件。基于这些发现,BEC、ITR、IWW和SFG沸石被选为这种特定分离最有前景的材料。