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首页> 外文期刊>Journal of Catalysis >Shape selective and hydrogen spillover approach in the design of sulfur-tolerant hydrogenation catalysts
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Shape selective and hydrogen spillover approach in the design of sulfur-tolerant hydrogenation catalysts

机译:耐硫加氢催化剂设计中的形状选择和氢溢出方法

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This paper presents a novel approach to preparing sulfur-tolerant noble metal catalysts and the proof-of-concept experimental results.Our approach combines the concepts of shape selectivity and hydrogen spillover to the design of sulfur-tolerant catalysts.Platinum particles were encapsulated in the NaA-zeolite cages during zeolite synthesis.The pore opening was subsequently reduced by potassium ion exchange and chemical vapor deposition of tetraethyl orthosilicate (TEOS),allowing hydrogen molecules to enter but preventing hydrogen sulfide molecules from contacting the platinum particles.The success of platinum encapsulation in KA-zeolite was confirmed by XRD,H_2 and CO chemisorption,and TOF-SIMS techniques.A sulfur-tolerant catalyst was prepared by mixing TEOS-treated Pt/KA-zeolite with HY-zeolite and gamma-alumina,and tested in the hydrogenation of naphthalene.Hydrogen species produced via dissociative adsorption of hydrogen molecules on platinum particles,situated inside KA-zeolite cages,migrated through surface diffusion to HY-zeolite and gamma -alumina.Our experimental data demonstrated that the encapsulated platinum particles continuously generated hydrogen surface species that were used to hydrogenate naphthalene adsorbed on HY-zeolite and gamma-alumina.These platinum particles showed resistance to sulfur poisoning when pure hydrogen was replaced by 3% H_2S in hydrogen in the naphthalene hydrogenation reaction.
机译:本文介绍了一种制备耐硫贵金属催化剂的新方法和概念验证的实验结果。我们的方法将形状选择性和氢溢出的概念结合到了耐硫催化剂的设计中。 NaA沸石在分子筛合成过程中被困住。随后通过钾离子交换和原硅酸四乙酯(TEOS)的化学气相沉积减少了开孔,允许氢分子进入但阻止硫化氢分子与铂颗粒接触。铂的成功封装通过XRD,H_2和CO化学吸附以及TOF-SIMS技术确定了KA沸石中的芳烃含量。通过将TEOS处理的Pt / KA沸石与HY沸石和γ-氧化铝混合制备耐硫催化剂,并在萘的氢化。氢分子通过氢分子在铂颗粒上的解离吸附而产生,位于KA沸石内部随着时间的流逝,它们通过表面扩散迁移到HY-沸石和γ-氧化铝。我们的实验数据表明,包封的铂颗粒连续产生氢表面物种,这些表面物种用于氢化吸附在HY-沸石和γ-氧化铝上的萘。在萘加氢反应中,用氢气中的3%H_2S代替纯氢,会导致硫中毒。

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