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Dandelion-Like Microspherical MCM-22 Zeolite Using BP 2000 as a Hard Template

机译:使用BP 2000作为硬模板的类似蒲公英的微球MCM-22沸石

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The chemistry between layered MWW zeolite and carbon black pearls (BP 2000) as an inexpensive hard template was investigated to develop a rational one-pot synthesis of MCM-22 microspheres. The characterization results showed that the insertion of BP 2000 in the gel synthesis did not substantially compromise the crystallinity and microporosity, and the microscopic analyses showed that BP 2000 played a key role in controlling the final morphology of the MCM-22 zeolite, creating beautiful dandelion-like microspherical particles. The morphology obtained is due to the tortuous shape of the hard template, the particular MWW particle crystals, the interaction with the external surface of the MWW zeolitic precursor, and the synthesis conditions. The stacking of MWW crystals with edge-to-face orientations generates meso-/macrovoids, allowing access to the interiors of the microspheres. The microspheres were homogeneous with sizes ranging from 6 to 8 μm with an increase of the external surface and a macroporous size distribution centered at 200 nm, which is two times that of the traditional MCM-22 zeolite.
机译:研究了层状MWW沸石和炭黑珍珠(BP 2000)之间的化学反应,作为廉价的硬模板,以开发合理的一锅法合成MCM-22微球。表征结果表明,BP 2000在凝胶合成中的插入并没有实质性地损害结晶度和微孔性,并且显微镜分析表明,BP 2000在控制MCM-22沸石的最终形态,形成美丽的蒲公英方面起着关键作用。状的微球形颗粒。获得的形态是由于硬模板的曲折形状,特定的MWW颗粒晶体,与MWW沸石前体外表面的相互作用以及合成条件所致。具有边对面方向的MWW晶体堆叠会产生中孔/微孔,从而可以进入微球内部。微球是均质的,尺寸范围为6至8μm,外表面增加,大孔尺寸分布集中在200 nm,这是传统MCM-22沸石的两倍。

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