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首页> 外文期刊>ChemCatChem >Highly Active and Coke-Tolerant Hierarchical Mordenite Catalysts Synthesized by Recrystallization for the Isopropylation of Naphthalene
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Highly Active and Coke-Tolerant Hierarchical Mordenite Catalysts Synthesized by Recrystallization for the Isopropylation of Naphthalene

机译:高活性和可易易易易耐焦的亚硝酸酯催化剂,其通过重结晶来合成萘的异丙烯化

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摘要

In the isopropylation of naphthalene for the production of 2,6-naphthalenedicarboxylate, the monomer of polyethylene naphthalate plastic, a shape-selective mordenite (MOR) zeolite catalyst provides the best selectivity for the desired 2,6-diisopropylnaphthalene. However, the small pore size of the zeolite limits the naphthalene conversion and lowers the stability because of pore-mouth blocking by coke. We discovered that these problems could be mitigated by synthesizing a micromeso hierarchical pore structure in the MOR zeolite by the recrystallization of MOR with cetyltrimethylammonium bromide as a mesopore-forming surfactant. The recrystallized catalysts allow the facile diffusion of bulky molecules through connected meso-and micropores to and from active catalytic sites located in the small MOR pores. Relative to microporous MOR, the hierarchical MOR catalyst demonstrated a greatly enhanced activity, stability, and coke tolerance, and the intrinsic high shape selectivity of MOR for 2,6-diisopropylnaphthalene was maintained. Mild desilication enlarged the pore volume and formed additional acid sites to increase the activity further.
机译:在萘的异丙丙烯化用于生产2,6-萘二羧酸甲酯,聚乙烯萘酸酯塑料的单体,一种形状选择性的丝硝酸酯(MOR)沸石催化剂为所需的2,6-二异丙基萘提供最佳选择性。然而,沸石的小孔径限制了萘转化,并降低了由于焦炭堵塞的孔口堵塞而降低稳定性。我们发现,通过用Mor与甲基三甲基铵的重结晶作为脱孔形成表面活性剂,可以通过在Mor沸石中合成MicroMeso分层孔结构来减轻这些问题。重结晶催化剂允许庞大分子通过连接的中间和微孔和来自位于小Mor孔中的活性催化位点的体积分子扩散。相对于微孔MOR,等级MOR催化剂展示了具有大大增强的活性,稳定性和焦炭耐受性,并且保持了MOR对于2,6-二异丙基萘的固有高形状选择性。温和的紫泥落体扩大了孔体积并形成了另外的酸位点以进一步增加活性。

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