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首页> 外文期刊>Angewandte Chemie >Boosting Size-Selective Hydrogen Combustion in the Presence of Propene Using Controllable Metal Clusters Encapsulated in Zeolite
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Boosting Size-Selective Hydrogen Combustion in the Presence of Propene Using Controllable Metal Clusters Encapsulated in Zeolite

机译:在丙烯的存在下使用包封在沸石中的可控金属簇存在尺寸选择性氢气燃烧

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摘要

A strategy is presented for making metal clusters encapsulated inside microporous solids selectively accessible to reactant molecules by manipulating molecular sieve size and affinity for adsorbed molecules. This expands the catalytic capabilities of these materials to reactions demanding high selectivity and stability. Selective hydrogen combustion was achieved over Pt clusters encapsulated in LTA zeolite (KA, NaA, CaA) in a propene-rich mixture obtained from propane dehydrogenation, showing pore-size dependent selectivity and coking rate. Propene tended to adsorb at channels or external surfaces of zeolite, interfering the diffusion of hydrogen and oxygen. Tailoring the surface of LTA zeolite with additional alkali or alkaline earth oxides contributed to narrowing zeolite pore size and their affinity for propene. The thus-modified Pt@KA catalyst displayed excellent hydrogen combustion selectivity (98.5%) with high activity and superior anti-coking and anti-sintering properties.
机译:通过操纵分子筛尺寸和吸附分子的亲和力选择性地可选择性地可获得反应物分子的微孔固体内封装的金属簇来制备策略。 这使这些材料的催化能力扩展到要求高选择性和稳定性的反应。 通过在LTA沸石(Ka,NAA,CAA)中封装的Pt簇中的选择性氢燃烧在从丙烷脱氢获得的富含丙烯的混合物中,显示孔径依赖性选择性和焦化率。 丙烯倾向于在沸石的通道或外表面上吸附,干扰氢和氧的扩散。 用额外的碱或碱土氧化物剪裁LTA沸石的表面,有助于缩小沸石孔径及其对丙烯的亲和力。 如此改性的Pt / Ka催化剂显示出具有高活性和优异的抗焦化和抗烧结性能的优异氢气燃烧选择性(98.5%)。

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