Pore Structure and Shape Selectivity of Platinum-Promoted Cesium Salts of 12-Tungstophosphoric Acid

被引:0
|
作者
Yusuke Yoshinaga
Tetsuo Suzuki
Miki Yoshimune
Toshio Okuhara
机构
[1] Hokkaido University,Graduate School of Environmental Earth Science
来源
Topics in Catalysis | 2002年 / 19卷
关键词
microporous heteropolyacids; shape-selectivity; platinum-promoted; micropores; oxidation;
D O I
暂无
中图分类号
学科分类号
摘要
Pore-widths and pore-size distributions of 0.5 wt% Pt-CsxH3-xPW12O40 have been studied by means of adsorption of various molecules. For the distributions of micropore and mesopore, isotherms of Ar and N2 adsorption were analyzed, respectively. Pt-Cs2.1H0.9PW12O40 possessed only ultramicropores. On the other hand, the pores of Pt-CsxH3-xPW12O40 (x = 2.3, 2.5, 2.8 and 3.0) showed bimodal distributions in the range from micropore to mesopore, and the widths of both pores tended to increase as the Cs content increased. From the amounts and rates of adsorption for n-butane and isobutane, the pore width of Pt-Cs2.1H0.9PW12O40 was determined to be close to the molecular size of n-butane, that is, 0.43 nm. The fraction of external surface area in the total surface area of Pt-Cs2.1H0.9PW12O40 was estimated to be only 0.06 from the adsorption of 1,3,5-trimethylbenzene and t-plot of N2 adsorption. Pt- Cs2.1H0.9PW12O40 exhibited a shape selectivity due to the uniform ultramicropores and small external surface area; it catalyzed the oxidation of n-butane but not that of isobutane. SEM and TEM measurements revealed the primary crystallites and their aggregated states.
引用
收藏
页码:179 / 185
页数:6
相关论文
共 50 条
  • [1] Pore structure and shape selectivity of platinum-promoted cesium salts of 12-tungstophosphoric acid
    Yoshinaga, Y
    Suzuki, T
    Yoshimune, M
    Okuhara, T
    TOPICS IN CATALYSIS, 2002, 19 (02) : 179 - 185
  • [2] Hydroisomerization of n-Butane over Platinum-Promoted Cesium Hydrogen Salt of 12-Tungstophosphoric Acid
    Liu, Yanyong
    Misono, Makoto
    MATERIALS, 2009, 2 (04): : 2319 - 2336
  • [3] An aluminum promoted cesium salt of 12-tungstophosphoric acid: a catalyst for butane isomerization
    Zhang, Li
    Yue, Bin
    Ren, Yuanhang
    Chen, Xueying
    He, Heyong
    CATALYSIS SCIENCE & TECHNOLOGY, 2013, 3 (08) : 2113 - 2118
  • [4] Microstructure of cesium hydrogen salts of 12-tungstophosphoric acid relevant to novel acid catalysis
    Okuhara, T
    Watanabe, H
    Nishimura, T
    Inumaru, K
    Misono, M
    CHEMISTRY OF MATERIALS, 2000, 12 (08) : 2230 - 2238
  • [5] Acidic cesium salts of 12-tungstophosphoric acid as catalysts for the dehydration of xylose into furfural
    Dias, Ana S.
    Lima, Sergio
    Pillinger, Martyn
    Valente, Anabela A.
    CARBOHYDRATE RESEARCH, 2006, 341 (18) : 2946 - 2953
  • [6] Skeletal isomerization of n-pentane over Pt-promoted cesium hydrogen salts of 12-tungstophosphoric acid
    Liu, YY
    Na, K
    Misono, M
    JOURNAL OF MOLECULAR CATALYSIS A-CHEMICAL, 1999, 141 (1-3) : 145 - 153
  • [7] Mixed salts of cesium and ammonium derivatives of 12-tungstophosphoric acid: Synthesis and structural characterization
    Santos, Joicy S.
    Dias, Jose A.
    Dias, Silvia C. L.
    Garcia, Fillipe A. C.
    Macedo, Julio L.
    Sousa, Flavia S. G.
    Almeida, Liana S.
    APPLIED CATALYSIS A-GENERAL, 2011, 394 (1-2) : 138 - 148
  • [8] Characterization of potassium salts of 12-tungstophosphoric acid
    Holclajtner-Antunovic, I.
    Mioc, U. B.
    Todorovic, M.
    Jovanovic, Z.
    Davidovic, M.
    Bajuk-Bogdanovic, D.
    Lausevic, Z.
    MATERIALS RESEARCH BULLETIN, 2010, 45 (11) : 1679 - 1684
  • [9] Mechanochemical synthesis of proton conductive cesium hydrogen salts of 12-tungstophosphoric acid and their composites
    Matsuda, Atsunori
    Kikuchi, Tornoya
    Katagiri, Kiyofumi
    Daiko, Yusuke
    Muto, Hiroyuki
    Sakai, Mototsugu
    SOLID STATE IONICS, 2007, 178 (7-10) : 723 - 727
  • [10] THERMAL DECOMPOSITION OF Pd DOPED 12-TUNGSTOPHOSPHORIC ACID AND SOME OF ITS CESIUM SALTS
    Sasca, Viorel
    Verdes, Orsina
    Avram, Livia
    Popa, Alexandru
    REVUE ROUMAINE DE CHIMIE, 2013, 58 (4-5) : 451 - 461