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首页> 外文期刊>ACS catalysis >Propene Production by Butene Cracking. Descriptors for Zeolite Catalysts
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Propene Production by Butene Cracking. Descriptors for Zeolite Catalysts

机译:丙烯裂解丙烯生产。 沸石催化剂的描述夹

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摘要

Among the possible on-purpose technologies for propene production, direct conversion of butene-rich fractions to propene represents an attractive alternative to conventional routes such as steam cracking or fluid catalytic cracking. Here, we present an approach for designing an efficient ZSM-5-based catalyst for the selective cracking of butenes to propene by properly balancing diffusional and compositional effects. Instead of the large coffin-shaped ZSM-5 crystallites with very high Si/Al ratios generally reported, the optimal catalyst in terms of propene selectivity and catalyst life was found to be a ZSM-5 zeolite with a squared morphology, submicron-sized crystals (0.8 × 0.3 × 1.0 μm), and a Si/Al molar ratio of around 300. For this crystal conformation, the short dimensions of both sinusoidal and straight channels facilitate propene diffusion and reduce its consumption in consecutive reactions, limiting the formation of C_(5+) oligomers and aromatics and maximizing propene selectivity. Coffin-type ZSM-5 crystals, with higher diffusional restrictions than square-shaped crystals, show faster catalyst deactivation than the latter, independently of the crystal size and Al content. However, among the ZSM-5 zeolite crystallites with a coffin morphology, the one presenting intergrowths on the (010) face, with a larger proportion of sinusoidal channels, shows a lower aromatic selectivity and deactivation rate, whereas the other two, with straight channels open to the clean (010) faces, favor the formation of aromatics by direct cyclization–dehydrogenation of oligomeric intermediates.
机译:在丙烯生产的可能的本用途技术中,富含丙烯的级分的直接转化为丙烯代表常规途径的有吸引力的替代方案,例如蒸汽裂化或流体催化裂化。在这里,我们通过适当平衡扩散和组成效果,提出一种设计高效ZSM-5基催化剂,用于通过适当平衡扩散和组成效果的丁烯对丙烯的选择性裂化。代替具有非常高的Si / Al比率的大棺材形状的ZSM-5微晶,通常报道,在丙烯选择性和催化剂寿命方面的最佳催化剂被发现是ZSM-5沸石,具有平方形态,亚微米晶粒(0.8×0.3×1.0μm),Si / Al摩尔比为约300。对于这种晶体构象,Sinuidal和直线通道的短尺寸有助于丙烯扩散并降低其在连续反应中的消耗,限制了C_的形成(5+)低聚物和芳烃和最大化丙烯选择性。棺型ZSM-5晶体,比方形晶体更高的扩散限制,显示比后者更快的催化剂停用,独立于晶体尺寸和Al含量。然而,在具有棺材形态的ZSM-5沸石微晶中,呈现在(010)面上的渗出,具有较大比例的正弦通道,显示出较低的芳族选择性和失活速率,而另外两个具有直线通过直接环化 - 脱氢脱氢,对清洁(010)脸部开放,芳族化合物的形成。

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