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Synthesis and characterization of ordered mesoporous aluminosilicate molecular sieve from natural halloysite

机译:天然埃洛石的有序介孔铝硅酸盐分子筛的合成与表征

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Currently, opening up the possibility of low-cost mineral for preparing ordered mesoporous materials is of significant importance. In the present work, hexagonally ordered mesoporous aluminosilicate molecular sieve was hydrothermally synthesized from natural halloysite without addition of silica or aluminum reagents. The mesoporous structure of the synthesized materials was confirmed by small angle X-ray diffraction and nitrogen sorption analysis. Scanning electron microscope and transmission electron microscope observations indicated that highly ordered two-dimensional hexagonal mesopor- ous structure was obtained. Wide angle X-ray diffraction and Fourier transform infrared spectroscopy were also used to examine the variations of chemical structures. The surface area of the prepared material after being calcined at 550 °C was 524.6 m~2/g and the pore volume was 0.87 cm~3/g. ~(27)Al solid state magic angle spinning nuclear magnetic resonance spectrum showed that all of aluminum species were tetrahedrally coordinated into the framework of the mesoporous material. A possible mechanism for the formation of aluminosilicate molecular sieves from natural halloysite was also discussed accordingly.
机译:当前,为制备有序介孔材料提供低成本矿物的可能性非常重要。在目前的工作中,从天然埃洛石水热合成六方有序介孔铝硅酸盐分子筛,而无需添加二氧化硅或铝试剂。通过小角度X射线衍射和氮吸附分析证实了合成材料的介孔结构。扫描电子显微镜和透射电子显微镜的观察表明,获得了高度有序的二维六角形介孔结构。广角X射线衍射和傅里叶变换红外光谱也被用来检查化学结构的变化。 550℃下煅烧后制得的材料的表面积为524.6m 2 / g,孔体积为0.87cm 3 / g。 〜(27)Al固态幻角自旋核磁共振光谱表明,所有铝物种均四面体配位到介孔材料的骨架中。相应地还讨论了由天然埃洛石形成铝硅酸盐分子筛的可能机理。

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