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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Synthesis method for introducing mesoporosity in a faujasitic-like zeolite system from a sodium aluminosilicate gel composition
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Synthesis method for introducing mesoporosity in a faujasitic-like zeolite system from a sodium aluminosilicate gel composition

机译:从硅铝酸钠凝胶组合物中引入型沸石沸石体系中的介孔率的合成方法

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We report a facile synthesis method of hierarchical faujasitic structures from a sodium aluminosilicate composition. The critical experimental variable was the removal of water via heat from the aluminosilicate gel during the synthesis process. These gels were used as starting materials for synthesis. With these partially dehydrated gels, extensive zeolite nucleation did occur, and the extent was varied both with the degree of dehydration and the temperature at which the dehydrated sample was maintained. Nanoparticles of FAU and EMT were formed that pack together resulting in external surface areas of 249 -259 m(2)/g. In addition, under certain conditions of crystal growth, sheet like-structures arising from FAU-EMT intergrowths were observed. The interpenetration packing of the nanosheets lead to zeolitic particles with external surface areas in the range of 127-199 m(2)/g. The pore size distribution varied with sample preparation and ranged from 2 to 100 nm. These samples were characterized by N-2 adsorption, X-ray diffraction and electron microscopy. The thermal and hydrothermal stability was also studied. In order to evaluate the role of the higher external surface area on a chemical reaction, the dealkylation of 1,3,5-triisopropylbenzene was examined and the product distribution did reflect the mesoporous nature of the sample. (C) 2016 Elsevier Inc. All rights reserved.
机译:我们报告了来自硅铝酸钠组合物的分层Faujasitic结构的容易合成方法。关键实验变量是在合成过程中通过来自硅铝酸盐凝胶的热量除去水。这些凝胶用作合成的原料。利用这些部分脱水凝胶,发生了广泛的沸石成核,随着脱水程度和维持脱水样品的温度而变化。形成FAU和EMT的纳米粒子,其中包装在一起,得到249 -259m(2)/ g的外表面区域。另外,在晶体生长的某些条件下,观察来自FAU-EMT生长的片状结构。纳米蛋白酶的互通包装导致具有127-199m(2)/ g的外表面区域的沸石颗粒。孔径分布随样品制备而变化,范围为2至100nm。这些样品的特征在于N-2吸附,X射线衍射和电子显微镜。还研究了热和水热稳定性。为了评估较高的外表面区域对化学反应的作用,检查了1,3,5-三异丙基苯的脱烷基化,产物分布确实反映了样品的介孔性质。 (c)2016年Elsevier Inc.保留所有权利。

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