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The Energetics of Surfactant-Templating of Zeolites

机译:沸石表面活性剂 - 模板的能量学

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Mesoporosity can be conveniently introduced into zeolites by treating them in basic surfactant solutions. The apparent activation energy involved in the formation of mesopores in USY by surfactant-templating was determined using a combination of insitu synchrotron X-ray diffraction and exsitu gas adsorption. Additionally, techniques such as pH measurement and thermogravimetry/differential thermal analysis were employed to determine OH- evolution and cetyltrimethylammonium ion (CTA(+)) uptake during the development of mesoporosity, thereby providing information about the different steps involved. The combination of both insitu and exsitu techniques has allowed determination of the apparent activation energies of the different processes involved in the mesostructuring of USY zeolites for the first time. Apparent activation energies are of the same order of magnitude (30-65kJmol(-1)) as those involved in the crystallization of zeolites. Hence, important mechanistic insight into the surfactant-templating method was obtained.
机译:通过在碱性表面活性剂溶液中处理它们,可以方便地将化学孔隙引入沸石中。使用Insitu Synchrotron X射线衍射和ExSitu气体吸附的组合测定由表面活性剂模板形成中孔的表观活化能量。另外,使用诸如pH测量和热重度/差分热分析的技术来确定在介孔的发展期间的OH-进化和十六烷基甲基铵离子(CTA(+))摄取,从而提供有关所涉及的不同步骤的信息。 Insitu和ExSitu技术的组合允许首次确定USY沸石的腹腔结构中涉及的不同过程的表观激活能量。表观激活能量是相同的数量级(30-65kJmol(-1)),如沸石结晶所涉及的数量级。因此,获得了对表面活性剂 - 模板方法的重要机械洞察。

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