State Key Laboratory of Fine Chemicals, PSU-DUT Joint Center for Energy Research, School of Chemical Engineering, Dalian University of Technology , Dalian 116024, P. R. China.
State Key Laboratory of Catalysis, Dalian Institute of Chemical Physics, Chinese Academy of Sciences , Dalian 116023, P. R. China.
ACS Appl Mater Interfaces. 2017 Aug 9;9(31):26096-26106. doi: 10.1021/acsami.7b07806. Epub 2017 Jul 31.
ZSM-5 that uses TPAOH as a template has an Al-rich exterior and defective Si-rich interior; thus, a simple base leaching selectively removed the Si-rich interior while the Al-rich exterior was protected. This catalyst showed no change in stability comparing with parent ZSM-5 during the MTP reaction that was attributed to the enclosed hollow structure and richly acidic outer shell. A preliminary fluorination, however, both removed defective Si-sites and caused distortion in tetrahedral aluminum that made the outer shell susceptible to alkaline treatment. These distorted tetrahedral Al were mostly leached out by NaOH in 1 min. Furthermore, aluminum in the filtrate was slowly redeposited onto the zeolite, serving as external pore-directing agents to control silicon dissolution from the Si-rich interior. This dealumination-realumination alkaline treatment process led to a higher solid yield and a uniform opened-mesopore structure with mesopores around 13 nm in diameter. This material was characterized by SEM, TEM, N adsorption, and mercury porosimetry. In addition, NH-TPD, OH-IR, Al MAS NMR, and H MAS NMR results demonstrated that the reinserted Al were unlike the framework Al, contributing less to acidity. The dealumination-realumination process, therefore, was also capable of tuning the acidity of the mesoporous ZSM-5. This mesoporous catalyst exhibited a longer lifetime and a higher propylene selectivity than other catalysts with an enclosed mesopore structure.
使用四丙基氢氧化铵(TPAOH)作为模板的 ZSM-5 具有富铝的外部和富硅的缺陷内部;因此,简单的碱浸选择性地去除了富硅的内部,而富铝的外部则得到了保护。与母体 ZSM-5 相比,这种催化剂在 MTP 反应中没有表现出稳定性的变化,这归因于其封闭的空心结构和丰富的酸性外壳。然而,初步的氟化处理既去除了有缺陷的硅位,又导致了四面体铝的变形,使外壳容易受到碱性处理的影响。这些变形的四面体 Al 大部分在 1 分钟内被 NaOH 浸出。此外,滤液中的铝缓慢地重新沉积在沸石上,作为外部孔导向剂,控制硅从富硅内部的溶解。这种脱铝再铝化的碱性处理过程导致了更高的固体产率和均匀的开放介孔结构,介孔直径约为 13nm。该材料通过 SEM、TEM、N 吸附和压汞法进行了表征。此外,NH-TPD、OH-IR、Al MAS NMR 和 H MAS NMR 结果表明,重新插入的 Al 与骨架 Al 不同,对酸度的贡献较小。因此,脱铝再铝化过程也能够调整介孔 ZSM-5 的酸度。与具有封闭介孔结构的其他催化剂相比,这种介孔催化剂表现出更长的寿命和更高的丙烯选择性。