吉林大学学报(理学版)

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高温水热法合成系列介孔氧化铝负载铂催化

孔维萍1,2, 王聪2, 徐丹丹2, 赵黎2, 邹永存1   

  1. 1. 吉林大学 无机合成与制备化学国家重点实验室, 长春 130012; 2. 绍兴文理学院 化学化工学院, 浙江 绍兴 312000
  • 收稿日期:2013-09-23 出版日期:2014-05-26 发布日期:2014-08-27
  • 通讯作者: 邹永存 E-mail:zouyc@jlu.edu.cn

High Temperature Hydrothermal Synthesis of PtFunctionalized Mesoporous Al2O3 andIts Catalytic Activity for Benzene Combustion

KONG Weiping1,2, WANG Cong2, XU Dandan2, ZHAO Li2, ZOU Yongcun1   

  1. 1. State Key Laboratory of Inorganic Synthesis and Preparative Chemistry, Jilin University, Changchun 130012, China;2. School of Chemistry and Chemical Engineering, Shaoxing University, Shaoxing 312000, Zhejiang Province, China
  • Received:2013-09-23 Online:2014-05-26 Published:2014-08-27
  • Contact: ZOU Yongcun E-mail:zouyc@jlu.edu.cn

摘要:

采用高温水热法制备稳定、 高度晶化的介孔氧化铝材料(M-Al2O3-n), 通过异丙醇铝前驱体与聚四乙烯基吡啶(P4VP)模板间的酸碱自组装实现材料介孔结构的构筑, 再经高温水热处理(180 ℃)实现孔壁的晶化, 并通过担载少量的铂活性组分研究其在催化完全燃烧苯中的性能. 结果表明: M-Al2O3-n具有高度晶化的孔壁结构和典型的γ-Al2O3晶型; M-Al2O3-n具有较大的比表面积(335 m2/g)、 孔容(1.36 cm3/g)和均一的孔径分布(16.1 nm); M-Al2O3-n具有粗糙的表面结构及丰富的纳米多孔结构; 该材料负载少量的铂(质量分数为03%)活性组分得到的新型催化材料在较温和的条件下即可将苯类VOCs完全催化燃烧.

关键词: 高温合成, 自组装, 介孔材料, 易挥发性有机物, 晶体孔壁

Abstract:

Stable crystalline mesoporous Al2O3 (M-Al2O3-n) supporting Pt with good catalytic activity for benzene combustion have been successfully prepared. M-Al2O3-ns support was synthesized from the self assembly of Al precursor with poly 4vinylpyridine (P4VP) template based on their strong acidbase interactions, followed by hydrothermal treatment at 180 ℃ and calcination at 550 ℃.  XRD patterns show that M-Al2O3-ns are highly crystalline  with
γ-Al2O3 character. N2 isotherms and pore size distribution show that M-Al2O3-ns have a high BET surface area (335 m2/g), large pore volume (1.36 cm3/g) and uniform mesopores (16.1 nm). SEM images show that M-Al2O3-ns have rough surface  and abundant mesopores. Catalytic tests show that M-Al2O3-ns exhibit  excellent activity for benzene combustion under rather mild conditions.

Key words: high temperature synthesis, selfassembly, mesoporous material, volatile organic compounds (VOCs), crystalline pore walls

中图分类号: 

  • O641