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Location of MTBE and toluene in the channel system of the zeolite mordenite: Adsorption and host-guest interactions

机译:mTBE和甲苯在沸石丝光沸石通道系统中的位置:吸附和主客体相互作用

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摘要

This paper reports a study of the location of Methyl Tertiary Butyl Ether (MTBE) and toluene molecules adsorbed in the pores of the organophylic zeolite mordenite from an aqueous solution. The presence of these organic molecules in the zeolite channels was revealed by structure refinement performed by the Rietveld method. About 3 molecules of MTBE and 3.6 molecules of toluene per unit cell were incorporated into the cavities of mordenite, representing 75% and 80% of the total absorption capacity of this zeolite. In both cases a water molecule was localized inside the side pocket of mordenite. The saturation capacity determined by the adsorption isotherms, obtained by batch experiments, and the weight loss given by thermogravimetric (TG) analyses were in very good agreement with these values. The interatomic distances obtained after the structural refinements suggest MTBE could be connected to the framework through a water molecule, while toluene could be bonded to framework oxygen atoms. The rapid and high adsorption of these hydrocarbons into the organophylic mordenite zeolite makes this cheap and environmental friendly material a suitable candidate for the removal of these pollutants from water.
机译:本文报道了甲基叔丁基醚(MTBE)和甲苯分子在水溶液中吸附在有机沸石丝光沸石孔中的位置的研究。这些有机分子在沸石通道中的存在通过通过Rietveld方法进行的结构细化来揭示。每个晶胞中约有3分子MTBE分子和3.6分子甲苯被掺入丝光沸石的空腔中,分别占该沸石总吸收能力的75%和80%。在这两种情况下,水分子都位于丝光沸石的侧袋内部。通过分批实验获得的吸附等温线确定的饱和容量,以及通过热重分析(TG)分析得出的重量损失与这些值非常吻合。结构改进后获得的原子间距离表明,MTBE可以通过水分子与骨架连接,而甲苯可以与骨架氧原子键合。这些碳氢化合物在有机类丝光沸石中的快速和高度吸附,使其成为一种廉价,环保的材料,非常适合从水中去除这些污染物。

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