纳米结构沸石mfi型ZSM5

L. Zoubida, Belarbi Hichem
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引用次数: 4

摘要

新型多孔固体材料的开发开始为污染和可持续发展问题提供有效和原创的解决方案,而挑战在于发现这些材料的新性能。这些材料中有沸石;然而,自1972年发现以来,有一种类型一直受到关注;这是沸石型ZSM-5,因为它们在许多工业过程中的特殊性能。这些多孔固体在原子尺度上以孔隙的存在为特征,它们在物质中有规律地分布,并可能在其结构中容纳气体、液体和固体,以捕获或暂时储存它们。只有这些沸石的平均孔隙率才会对具有良好分支的笨重分子的催化作用构成障碍。为了转移这种不可接近的因素,并试图找到解决这种位阻的方法,研究人员的注意力集中在利用ZSM-5的表面特性上。众所周知,多孔催化剂的效率和选择性取决于其结构和结构特征,更确切地说,取决于外表面活性位置的数量和可通过多孔系统的位置的数量。沸石的纳米结晶度可以定义为沸石的物理化学性质在很大程度上是由晶体外边界的大量原子决定的。在这一章中,介绍了几位研究人员在纳米结构领域合成ZSM5的工作。我们发现,尽管不同的合成方法,然而,纳米结构领域的ZSM5已经实现。矿物剂的浓度、结构剂的浓度、老化时间等参数对所得沸石的晶粒大小有直接影响。采用不同的表征方法对纳米晶ZSM5的纯度和尺寸进行了鉴定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Nanostructure Zeolites MFI-Type ZSM5
The development of new porous solids begins to provide effective and original solutions to the problems of pollution and sustainable development, and the challenge is to discover new performance of these materials. Among these materials are zeolites; however, one type has retained the attention since its discovery in 1972; this is zeolite-type ZSM-5, because of their particular properties in many industrial processes. These porous solids are characterized on the atomic scale by the existence of pores, distributed regularly in the matter and are likely to accommodate in their structures, gases, liquids, and solids for trap or temporarily store them. Only the average porosity of these zeolites constitutes an obstacle to the catalysis of cumbersome molecules that are well branched. To deflect this inaccessibility factor and trying to find a solution to this steric hindrance, the attention of the researchers was focused on using the surface properties of ZSM-5. It is well known that the efficiency and selectivity of a porous catalyst depends on its textural and structural characteristics and more precisely on the number of locations active on the external surface and the number of locations accessible through the porous system. The nanocrystallinity in the field of zeolites can be defined as a situation in which the physicochemical properties are largely determined by a larger number of atoms in the outer limit of crystallite. In this chapter, the work of several researchers who synthesized the ZSM5 in the field of nanostructures is presented. We find that, despite the different methods of synthesis, however, the field of nanostructures ZSM5 has been achieved. Certain parameters such as the concentration of mineral agent, the concentration of the structuring agent, and the duration of aging have a direct influence on the crystal size of the zeolites obtained. Different characterizations were used to identify the purity and size of the nanocrystals ZSM5.
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