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Small-Pore Zeolites: Synthesis and Catalysis

机译:小孔隙沸石:合成和催化

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摘要

In the past decade or so, small-pore zeolites have received greater attention than large- and medium-pore molecular sieves that have historically dominated the literature. This is primarily due to the commercialization of two major catalytic processes, NOx exhaust removal and methanol conversion to light olefins, that take advantage of the properties of these materials with smaller apertures. Small-pore zeolites possess pores that are constructed of eight tetrahedral atoms (Si4+ and Al3+), each time linked by a shared oxygen These eight-member ring pores (8MR) provide small molecules access to the intracrystalline void space, e.g., to NOx during car exhaust cleaning (NOx removal) or to methanol en route to its conversion into light olefins, while restricting larger molecule entrance and departure that is critical to overall catalyst performance. In total, there are forty-four structurally different small-pore zeolites. Forty-one of these zeolites can be synthesized, and the first synthetic zeolite (KFI, 1948) was in fact a small-pore material. Although the field of 8MR zeolite chemistry has expanded in many directions, the progress in synthesis is framework-specific, leaving insights and generalizations difficult to realize. This review first focuses on the relevant synthesis details of all 8MR zeolites and provides some generalized findings and related insights. Next, catalytic applications where 8MR zeolites either have been commercialized or have dominated investigations are presented, with the aim of providing structure activity relationships. The review ends with a summary that discusses (i) both synthetic and catalytic progress, (ii) a list of opportunities in the 8MR zeolite field, and (iii) a brief future outlook.
机译:在过去的十年左右,小孔隙沸石比大型和中孔分子筛的更大的关注,历史地占据了文献。这主要是由于两个主要催化过程的商业化,NOx废弃物和甲醇转化为光烯烃,其利用这些材料的性质具有较小的孔。小孔隙沸石具有由八个四面体原子(Si4 +和Al3 +)构成的孔,每次通过共用氧气连接这些八个成员环孔(8MR),提供小分子可接近肠内空隙空间,例如NOx期间汽车排气清洁(NOx除去)或甲醇途中转化为光烯烃,同时限制对整体催化剂性能至关重要的较大分子入口和偏离。总共有四十四个结构不同的小孔沸石。可以合成四十一沸石,并且第一合成沸石(KFI,1948)实际上是一种小孔材料。尽管8MR沸石化学的领域在许多方向上扩展,但合成的进展是框架特异性的,难以实现的洞察力和概念性。该审查首先侧重于所有8MR沸石的相关综合细节,并提供了一些广义调查结果和相关见解。接下来,提出了8mR沸石已经商业化或已经有导地研究的催化应用,目的是提供结构活动关系。审查结束于讨论(i)综合性和催化进展,(ii)8MR沸石领域的机会列表,(iii)是一个简短的未来前景。

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  • 来源
    《Chemical Reviews》 |2018年第11期|共65页
  • 作者单位

    Katholieke Univ Leuven Ctr Surface Chem &

    Catalysis Celestijnenlaan 200F B-3001 Heverlee Belgium;

    CALTECH Chem Engn Mail Code 210-41 Pasadena CA 91125 USA;

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  • 正文语种 eng
  • 中图分类 化学;
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