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Synthesis and hydrophobic adsorption properties of microporous/mesoporous hybrid materials

机译:微孔/中孔杂化材料的合成及疏水吸附性能

摘要

Hybrid materials of silicalite-1(Sil-1)-coated SBA-15 particles (MSs) have been successfully synthesized by crystallization process under hydrothermal conditions. These MSs materials were characterized by X-ray diffraction, nitrogen adsorption/desorption and TEM techniques, which illustrated that the silicalite-1-coated SBA-15 particles were successfully prepared and had large pore volume and hierarchical pore size distribution. Further experimental studies indicated that longer crystallization time under basic condition caused the mesostructure of SBA-15 materials to collapse destructively and higher calcination temperature tended to disrupt the long-range mesoscopic order while they had little influence on the phase of microcrystalline silicalite-1 zeolite. The resultant MSs materials were investigated by estimating dynamic adsorption capacity under dry and wet conditions to evaluate their adsorptive and hydrophobic properties. The hydrophobicity index (HI) value followed the sequence of silicalite-1 MSs SBA-15, which revealed that the SBA-15 particles coated with the silicalite-1 seeds enhanced the surface hydrophobicity, and also were consistent with FTIR results. Our studies show that MSs materials combined the advantages of the ordered mesoporous material (high adsorptive capacity, large pore volume) and silicalite-1 zeolite (super-hydrophobic property, high hydrothermal stability). and the presence of micropores directly led to an increase in the dynamic adsorption capacity of benzene under dry and wet conditions. (C) 2008 Elsevier B.V. All rights reserved.
机译:通过水热条件下的结晶过程已成功合成了silicalite-1(Sil-1)包覆的SBA-15颗粒(MSs)杂化材料。通过X射线衍射,氮气吸附/解吸和TEM技术对这些MSs材料进行了表征,表明成功制备了硅沸石-1包覆的SBA-15颗粒,具有较大的孔体积和分级的孔径分布。进一步的实验研究表明,在碱性条件下较长的结晶时间会导致SBA-15材料的介孔结构破坏性地塌陷,而较高的煅烧温度往往会破坏远距离介观序,而对微晶silicalite-1沸石的相几乎没有影响。通过估计在干燥和潮湿条件下的动态吸附能力来研究所得的MSs材料,以评估其吸附和疏水性能。疏水指数(HI)值遵循silicalite-1> MSs> SBA-15的顺序,这表明包覆silicalite-1种子的SBA-15颗粒增强了表面疏水性,并且与FTIR结果一致。我们的研究表明,MSs材料结合了有序介孔材料(高吸附能力,大孔体积)和silicalite-1沸石(超疏水性,高水热稳定性)的优势。微孔的存在直接导致了在干燥和潮湿条件下苯的动态吸附能力的提高。 (C)2008 Elsevier B.V.保留所有权利。

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