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Comparative study of n-hexane aromatization on Pt/KL, Pt/Mg(Al)O, and Pt/SiO2 catalysts: Clean and sulfur-containing feeds

机译:Pt / KL,Pt / Mg(Al)O和Pt / SiO2催化剂上正己烷芳构化的比较研究:清洁的含硫进料

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The n-hexane aromatization has been studied on Pt/KL, Pt/Mg(Al)O, and Pt/SiO2 catalysts at 773 K using sulfur-free and 0.6 ppm sulfur containing feedstocks. Examination of the product distribution as a function of conversion suggests that the formation of benzene is preceded by the formation of hexenes. In contrast with previous reports, it has been found that the Pt/KL catalyst exhibits much higher aromatization activity than the Pt/Mg(Al)O catalyst. On Pt/KL the main product is benzene, with hexenes and lighter compounds as the principal by-products. By contrast, on the Pt/Mg(Al)O, the main products were hexenes. Since hexenes are primary products and benzene is a secondary product, the exceptional aromatization activity of Pt/KL is explained in terms of its ability to convert hexene into benzene. In the presence of sulfur, the Pt/KL exhibits a rapid loss in n-hexane conversion and benzene selectivity. Under these conditions, the sulfided Pt/KL catalyst presents a catalytic behavior typical of Pt/Mg(Al)O and Pt/SiO2, generating larger amounts of hexenes. The observed results are consistent with the hypothesis that the most important role of the zeolite is to inhibit bimolecular interactions that lead to coke formation. The formation of coke has the net effect of selectively deactivating aromatization sites which require a large ensemble of atoms to constitute the active site but not affecting the dehydrogenation activity which is less ensemble-sensitive. Therefore, those particles that are not protected against coking inside the channels of the zeolite rapidly become unselective. In support of this hypothesis, the hydrogenolysis reaction which also requires a large ensemble of atoms, decreases in parallel with the aromatization reaction. The high sensitivity of Pt/KL, to sulfur may be due to a combination of effects which may involve growth of metal particles outside the zeolite which would become unselective and partial poisoning of the particles inside the zeolite, causing a similar selective deactivation. (C) 1998 Academic Press [References: 41]
机译:已经在Pt / KL,Pt / Mg(Al)O和Pt / SiO2催化剂上使用无硫和0.6 ppm含硫原料对正己烷进行芳构化研究。检查产物分布与转化率的关系表明,苯的形成先于己烯的形成。与以前的报道相反,已经发现Pt / KL催化剂表现出比Pt / Mg(Al)O催化剂高得多的芳构化活性。在Pt / KL上,主要产品是苯,而己烯和较轻的化合物为主要副产品。相反,在Pt / Mg(Al)O上,主要产物是己烯。由于己烯是主要产物,苯是次要产物,因此Pt / KL具有出色的芳构化活性,可以将己烯​​转化为苯。在硫的存在下,Pt / KL在正己烷转化率和苯选择性方面表现出快速的损失。在这些条件下,硫化的Pt / KL催化剂表现出典型的Pt / Mg(Al)O和Pt / SiO2催化行为,生成大量的己烯。观察到的结果与以下假设一致:沸石最重要的作用是抑制导致焦炭形成的双分子相互作用。焦炭的形成具有选择性地钝化芳构化位点的净效果,芳构化位点需要大量的原子来构成活性位点,但不影响对整体敏感度较低的脱氢活性。因此,没有被保护以防止在沸石的通道内结焦的那些颗粒迅速变为非选择性的。为了支持该假设,还需要大量原子团的氢解反应与芳构化反应平行地减少。 Pt / KL对硫的高敏感性可能是由于多种影响的结合,这些影响可能涉及沸石外部金属颗粒的生长,这将变得非选择性,并使沸石内部的颗粒部分中毒,从而导致类似的选择性失活。 (C)1998年学术出版社[参考文献:41]

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