首页> 外文期刊>Journal of Catalysis >MODIFICATION OF NON-TEMPLATE SYNTHESIZED FERRIERITE/ZSM-35 FOR N-BUTENE SKELETAL ISOMERIZATION TO ISOBUTYLENE
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MODIFICATION OF NON-TEMPLATE SYNTHESIZED FERRIERITE/ZSM-35 FOR N-BUTENE SKELETAL ISOMERIZATION TO ISOBUTYLENE

机译:N-丁烯骨架异构化为异丁烯的非模板合成铁矾/ ZSM-35的改性

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Non-template synthesized ferrierite/ZSM-35 has been successfully modified by removal of non-shape selective acid sites and lowering of the number of acid sites. Modified materials were extensively studied by XRD, FT-IR, NMR, XPS, ammonia TPD, and kinetic evaluations for skeletal isomerization of n-butene to isobutylene. Removal of non-shape selective acid sites from non-template synthesized ferrierite/ZSM-35 greatly suppresses butene dimerization reactions. These non-shape selective acid sites are located inside larger internal pores (as compared to the zeolitic pores) and on the surface of non-template synthesized ferrierite/ZSM-35 materials due to their lower crystallinity. Such non-shape selective acid sites were removed via framework dealumination of the surface with acid treatment. Lowering of the number of acid sites of non-template synthesized ferrierite/ZSM-35 decreases interactions of butene intermediates on adjacent acid sites and was achieved via framework dealumination by steaming. Steaming of non-template synthesized ferrierite/ZSM-35 at higher temperatures or higher steam pressures produces more dealumination and, accordingly, further lowering of the number of acid sites. The presence of Na+/K+ ions gives more resistance to framework dealumination during steaming and the same potential for removing strong and weak acid sites, However, steaming of ferrierite/ZSM-35 of hydrogen form leads to removal of greater amounts of strong acid sites than weak acid sites, Studies have shown that steaming of non-template synthesized ferrierite/ZSM-35 of Na+/K+ forms followed by NH4+ ion exchange and acid washing is an effective modification procedure, Catalytic performances for such modified materials are very similar to those for template-synthesized materials, with respects to yields, selectivities, and catalytic stability. (C) 1996 Academic Press, Inc. [References: 25]
机译:非模板合成镁碱沸石/ ZSM-35已通过去除非形状选择性酸性位点和减少酸性位点数量而成功改性。通过XRD,FT-IR,NMR,XPS,氨TPD以及改性正丁烯向异丁烯的骨架异构化的动力学评估,对改性材料进行了广泛的研究。从非模板合成镁碱沸石/ ZSM-35中去除非形状选择性酸位点可极大地抑制丁烯二聚反应。这些非形状选择性酸位点由于其较低的结晶度而位于较大的内部孔内(与沸石孔相比),并且位于非模板合成镁碱沸石/ ZSM-35材料的表面上。通过用酸处理的表面的框架脱铝去除了这些非形状选择性酸位。降低非模板合成镁碱沸石/ ZSM-35的酸性位点数量会降低丁烯中间体在相邻酸性位点上的相互作用,这是通过蒸煮将骨架脱铝而实现的。非模板合成镁碱沸石/ ZSM-35在更高的温度或更高的蒸汽压力下汽化会产生更多的脱铝作用,因此会进一步降低酸位的数量。 Na + / K +离子的存在在蒸煮过程中对骨架的脱铝有更大的抵抗力,并且具有去除强酸和弱酸位的潜力。但是,蒸镁碱沸石/ ZSM-35氢形式的水汽化会导致去除大量的强酸位研究表明,将Na + / K +形式的非模板合成镁碱沸石/ ZSM-35汽蒸,然后进行NH4 +离子交换和酸洗是一种有效的改性方法,此类改性材料的催化性能与模板合成的材料在产率,选择性和催化稳定性方面。 (C)1996 Academic Press,Inc. [参考:25]

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