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Hydrophobic micro/mesoporous silica spheres assembled from zeolite precursors in acidic media for aromatics adsorption

机译:由沸石前体在酸性介质中组装的疏水性微孔/介孔二氧化硅球体,用于芳烃吸附

摘要

The micro/mesoscopic silicas (MMS) were successfully synthesized with a self-assembly approach by employing silicalite-1 zeolite seeds as precursors in acid media. The resulting MMS samples were characterized by X-ray diffraction (XRD), nitrogen adsorption/desorption, n-nonane pre-adsorption and transmission electron microscopy (TEM). After aging for 18 h, the obtained materials exhibit both well-defined low- and high-angle XRD peaks. The XRD results combined with other characterizations confirm that the zeolite precursors, after aging for 18 h, were assembled to hierarchical porous composites, featuring both zeolite-like microporous and mesoporous structures rather than a physical mixture of bulk zeolite and mesoporous solid. It was found that the MMS samples exhibit spherical morphology, with high surface area and large total pore volume. Even with the aging time increasing up to 24 h, the obtained biporous composite MMS-24 still presents high surface area of 536 m(2) g(-1) and large total pore volume of 0.66 cm(3) g(-1). The adsorption of benzene by the hierarchical materials under static and dynamic conditions was also investigated. The results of the adsorption isotherms and isosteric adsorption heat reveal that MMS-24 represents super hydrophobicity and high affinity towards aromatics. The adsorption capacity of benzene on MMS-24 is approximately three times higher than that on silicalite-1 zeolite. As indicated by the adsorption dynamic study, MMS-24 has high tendency towards benzene in the presence of water vapor, retaining high benzene removal efficiency (85%) comparing with that under dry condition. (C) 2010 Elsevier Inc. All rights reserved.
机译:通过使用silicalite-1沸石种子作为前体在酸性介质中,通过自组装方法成功地合成了微/介观二氧化硅(MMS)。所得的MMS样品通过X射线衍射(XRD),氮吸附/脱附,正壬烷预吸附和透射电子显微镜(TEM)进行表征。老化18小时后,获得的材料同时显示出清晰的低角度和高角度XRD峰。 XRD结果与其他特征相结合证实,老化18h后的沸石前体被组装成分级的多孔复合材料,具有类似沸石的微孔和中孔结构,而不是本体沸石和中孔固体的物理混合物。发现MMS样品呈现球形形态,具有高表面积和大总孔体积。即使老化时间增加到24小时,获得的双孔复合材料MMS-24仍然具有536 m(2)g(-1)的高表面积和0.66 cm(3)g(-1)的大总孔体积。还研究了静态和动态条件下分层材料对苯的吸附。吸附等温线和等位吸附热的结果表明,MMS-24表现出超疏水性和对芳族化合物的高亲和力。苯在MMS-24上的吸附能力大约是silicalite-1沸石的三倍。如吸附动力学研究所示,MMS-24在存在水蒸气的情况下极易产生苯,与干燥条件下相比,苯去除效率高(85%)。 (C)2010 Elsevier Inc.保留所有权利。

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