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首页> 外文期刊>RSC Advances >Synthesis of a novel nano-rod-shaped hierarchical silicoaluminophosphate SAPO-11 molecular sieve with enhanced hydroisomerization of oleic acid to iso-alkanes
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Synthesis of a novel nano-rod-shaped hierarchical silicoaluminophosphate SAPO-11 molecular sieve with enhanced hydroisomerization of oleic acid to iso-alkanes

机译:具有增强油酸加氢异构化的新型纳米棒状分层硅铝磷酸盐SAPO-11分子筛对异烷烃

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In this article, a novel nano-rod-shaped SAPO-11 molecular sieve (SAPO-11-A-F) with a thickness of ca. 100 nm was successfully fabricated by the in situ seed-induced steam-assisted method using the cationic surfactant cetyltrimethylammonium bromide (CTAB) as a mesoporous template and a nonionic copolymer poly(ethylene oxide)-block-poly(propylene oxide)-block-poly(ethylene oxide), F-127, as the crystal growth inhibitor. The fabricated nano-rod-shaped SAPO-11-A-F possessed nanocrystalline size, a hierarchical porous structure, and enhanced acidic sites. The added CTAB was mainly used to enhance the mesoporous structure and acid, and F-127 acted as a grain growth inhibitor. According to the orientation growth mechanism of the molecular sieves, the crystallization mechanism of the nano-rod-shaped hierarchical porous molecular sieves with different crystallization times was investigated. It was found that the nano-rod-shaped molecular sieves were formed by the accumulation of nano-sheets. Compared to three nickel catalysts with different silicoaluminophosphate SAPO-11 molecular sieves in the hydroisomerization of oleic acid to iso-alkanes, the bifunctional catalyst of 7% Ni/SAPO-11-A-F had higher isomeric selectivity (79.8%); in particular, the isomeric octadecane showed stronger selectivity, indicating that the nano-rod-shaped SAPO-11 molecular sieve is more beneficial for the hydrodehydration reaction.
机译:在本文中,具有厚度的新型纳米棒状SAPO-11分子筛(SAPO-11-A-F)。通过原位种子诱导的蒸汽辅助方法使用阳离子表面活性剂十六烷基三甲基溴化铵(CTAB)作为介孔模板和非离子共聚物聚(环氧乙烷)--BlOck-poly(环氧丙烷) - Block-poly的蒸汽辅助溴化物(CTAB)成功地制造了100nm。--block-poly(环氧丙烷)--block-poly (环氧乙烷),F-127,作为晶体生长抑制剂。制造的纳米棒状SAPO-11-A-F具有纳米晶体尺寸,分层多孔结构和增强的酸性位点。添加的CTAB主要用于增强介孔结构和酸,并且F-127用作晶粒生长抑制剂。根据分子筛的取向生长机制,研究了纳米棒状分层多孔分子筛的结晶机理,具有不同的结晶时间。发现通过纳米片的积聚形成纳米棒状分子筛。与三种镍催化剂相比,具有不同硅铝磷酸盐的SAPO-11分子筛,在油酸对异烷烃中的氢化异构化中,双官能催化剂为7%Ni / Sapo-11-A-F具有更高的异构选择性(79.8%);特别地,异构八二烷烷显示得更强的选择性,表明纳米棒状SAPO-11分子筛对加氢氢化反应更有利。

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    《RSC Advances 》 |2019年第59期| 共8页
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  • 正文语种 eng
  • 中图分类 化学 ;
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