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具有介孔结构丝光沸石的合成与表征 被引量:8

Synthesis and Characterization of Mordenites with Mesoporous Structures
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摘要 基于丝光沸石骨架结构固有的晶体缺陷特征,提出诱导晶体结构缺陷和由结构缺陷衍生晶内介孔的研究方案。采用三元有机超分子胶束模板剂和两段变温晶化水热法,制备出丝光沸石基多级介孔材料。通过粉末X射线衍射、77K氮吸附–脱附、场发射透射电子显微镜、氨程序升温脱附对合成的介孔材料的晶相、形貌、介孔特征和水热稳定性进行了表征。结果表明:所合成的典型丝光沸石具有较高的相对结晶度,介孔比表面积和介孔体积分别为152.7m2/g和0.163 cm3/g;晶体内介孔在3~50 nm区间呈多级分布;其酸性质与微孔丝光沸石相匹配;水热稳定性较有序介孔材料MCM-41有显著提高。与聚集态纳米沸石组装介孔材料不同,合成的介孔丝光沸石晶体表面上介孔排布密度和尺寸分布缺乏均一性,故而由体相结构缺陷诱导形成的附加介孔呈显著无序状态。 Based on the intrinsic crystal defects in the framework characters of mordenite(MOR),a protocol was proposed for in-tracrystalline mesopore formation from these crystal defects in the MOR phase.Several crystalline mesoporous materials with the MOR structure were synthesized via a hydrothermal method with two-staged temperature crystallizations using ternary organic su-permolecular micelles as templates.The phase structure,morphology,mesopore feature and hydrothermal stability of these synthe-sized mesopore materials were characterized by powder X-ray diffraction,N2 adsorption and desorption at 77 K,transmission electron microscope and NH3 temperature-programmed desorption.The results indicate that the mesopore materials with the unique MOR phase synthesized have a higher relative crystallinity.The specific mesopore surface area and mesopore volume of the mesopore MOR material with the additional textural mesopores achieved 152.7 m2/g and 0.163 cm3/g,respectively,and the pore distribution is in the range of 3–50 nm.The acid capacity and acid strength distribution both were confirmed with the normal microporous MOR.The hydrothermal stability of the typical mesopore MOR was improved more availably than long-ordered MCM-41.Unlike other mesoporous materials assembled by the aggregate nanozeolite crystallites,the arrayed density and size of mesopores on the MOR crystal surface showed much less uniform,and hence the mesopores derived from the bulk structural defects presented the remarkable disordering character in texture.
出处 《硅酸盐学报》 EI CAS CSCD 北大核心 2012年第3期425-431,共7页 Journal of The Chinese Ceramic Society
基金 辽宁省自然科学基金(200922180) 辽宁省高等教育科学研究协会(2009A439)资助项目
关键词 丝光沸石 水热合成 多级介孔分布 水热稳定性 mordenite hydrothermal synthesis hierarchical mesopore distribution hydrothermal stability
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参考文献30

  • 1KUSTOVA M,EGEBLAD K,ZHU K,et a1.Versatile route to zeolitesingle crystals with controlled mesoporosity:in situ sugar decompositionfor templating of hierarchical.
  • 2JACOBSEN C J H,MADSEN C,HOUZVICKA J,et a1.Mesoporouszeolite single crystals[J]J Am Chem Soc,2000,122(29):7116–7117.
  • 3PHILIPPE B,JANOS B,JACOBS Peter A,et al.Aluminum siting inmordenite and de-alumination mechanism[J]J Phys Chem,1986,90:5183–5190.
  • 4ZHU Haibi,LIU Zhicheng,KONG Dejin,et al.Synthesis and catalyticperformances of mesoporous zeolites templated by polyvinyl butyralgel as the mesopore directing ag.
  • 5TAO Yousheng,HATTORI Yoshiyuki,MATUMOTO Akihiko,et al.Comparative study on pore structures of mesoporous ZSM-5 from re-sorcinol-formaldehyde aerogel and carbon a.
  • 6CHO Kanghee,CHO Hae Sung,de ME’NORYAL Louis-Charles,et al.Generation of mesoporosity in LTA zeolites by organosilane surfactantfor rapid molecular transport in.
  • 7LEE Kyong-Hwan,HA Baik-Hyon,LEE Youn-Woo.Catalytic crack-ing of vacuum gas oil over the modified mordenites and Y-type zeolitesmixed with alumina[J]Ind Eng Chem.
  • 8THOMAS J,PISKLAK,KENNETH J.et al.Preparation and charac-terization of mordenite thin films via pulsed laser deposition[J]J Po-rous Mater,2004,11:191–209.
  • 9BAN Shuai,VLUGT Thijs J H.Adsorption and diffusion of alkanes inNa-MOR:modeling the effect of the aluminum distribution[J]J ChemTheory Comput,2009,5:2858–2865.
  • 10ALEXANDRA Navrotsky,OLGA Trofymluk,ANDREY A.Thermo-chemistry of microporous and mesoporous materials[J]Chem Rev,2009,109(9):3885–3902.

二级参考文献38

  • 1李守贵,毛雅春,徐如人,唐敖庆.单态铝酸根离子与单态硅酸根离子反应的研究[J].高等学校化学学报,1995,16(1):22-25. 被引量:6
  • 2李守贵,毛亚春,徐如人,唐敖庆.高聚硅酸根离子与单态铝酸根离子聚合反应及其水热晶化行为的研究[J].高等学校化学学报,1995,16(10):1491-1494. 被引量:3
  • 3高雄厚,石油学报,1997年,13卷,3期,15页
  • 4刘从华,石油学报,1997年,13卷,2期,80页
  • 5Wu C N,Microporous Mater,1996年,7卷,173页
  • 6Liu Y,Zhang W,Pinnavaia T J.J.Am.Chem.Soc.[J],2000,122:8 791~8 792
  • 7Zhang Z T,Han Y,Xiao F S,et al.J.Am.Chem.Soc.[J],2001,123:5014~5021
  • 8Yan Di,Yi Yu,Yingyong Sun,et al.Mic.Mes.Mater.[J],2003,62:221~228
  • 9Back J S,Vartuli J C,Roth W J,et al.J.Am.Chem.Soc.[J],1992,114(1):10834~10842
  • 10Lee,S.H.; Lee,D.K.; Shin,C.H.; Paik,W.C.; Lee; W.M.; Hong,S.B.J.Catal.,2000,196(1):158

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