Vinh-Thang Hoang, Huang Qinglin, Eić Mladen, Trong-On Do, Kaliaguine Serge
Department of Chemical Engineering, Laval University, Ste-Foy, Québec, Canada, G1K 7P4.
Langmuir. 2005 May 24;21(11):5094-101. doi: 10.1021/la050135o.
In our recent studies (Vinh-Thang, H.; Huang, Q.; Eic, M.; Trong-On, D.; Kaliaguine, S. Langmuir 2005, 21, 2051-2057; Vinh-Thang, H.; Huang, Q.; Eic, M.; Trong-On, D.; Kaliaguine, S. Stud. Surf. Sci. Catal. 2005, in press), a series of synthesized SBA-15 materials were characterized using nitrogen adsorption/desorption isotherms at 77 K and SEM images. In the present paper, four of them (MMS-1-RT, MMS-1-60, MMS-1-80, and MMS-5-80) were further investigated with regard to their equilibrium characteristics using n-heptane and toluene as sorbates by the standard gravimetric technique. SBA-15 materials proved to have a broad pore size distribution within the micropore/small-mesopore range in the walls of their main mesoporous channels. The adsorption capacities for toluene were found to be higher than for n-heptane. The isosteric heats of adsorption, estimated by the Clausius-Clapeyron equation, are also higher for toluene compared to n-heptane. They were found to depend on framework microporosity of the relevant SBA-15 samples. The isosteric heats of adsorption for all sorbates decrease with increased loading and approach the heats of evaporation of the respective sorbate. The adsorption capacities of SBA-15 samples are significantly higher than those of silicalite, i.e., the MFI zeolite silica analogue. In contrast to that, the isosteric heats of adsorption in the mesopore channels of SBA-15 were found to be much smaller. This result also suggests that SBA-15 can potentially be a good candidate for separation of C(7) hydrocarbons.
在我们最近的研究中(Vinh-Thang, H.; Huang, Q.; Eic, M.; Trong-On, D.; Kaliaguine, S. 《朗缪尔》2005年,21卷,2051 - 2057页;Vinh-Thang, H.; Huang, Q.; Eic, M.; Trong-On, D.; Kaliaguine, S. 《表面科学与催化研究》2005年,待发表),一系列合成的SBA - 15材料通过77 K下的氮气吸附/脱附等温线和扫描电子显微镜图像进行了表征。在本文中,使用标准重量法,以正庚烷和甲苯作为吸附质,对其中四种材料(MMS - 1 - RT、MMS - 1 - 60、MMS - 1 - 80和MMS - 5 - 80)的平衡特性进行了进一步研究。结果表明,SBA - 15材料在其主要介孔通道壁的微孔/小介孔范围内具有较宽的孔径分布。发现对甲苯的吸附容量高于正庚烷。通过克劳修斯 - 克拉佩龙方程估算的吸附等量热,甲苯也高于正庚烷。发现它们取决于相关SBA - 15样品的骨架微孔率。所有吸附质的吸附等量热随着负载量的增加而降低,并接近各自吸附质的蒸发热。SBA - 15样品的吸附容量显著高于硅沸石,即MFI型沸石的二氧化硅类似物。与此相反,发现SBA - 15介孔通道中的吸附等量热要小得多。这一结果还表明,SBA - 15有可能是分离C₇烃的良好候选材料。