Interfacing mercury porosimetry with nitrogen sorption

被引:21
|
作者
Rigby, SP [1 ]
Fletcher, RS
机构
[1] Univ Bath, Dept Chem Engn, Bath BA2 7AY, Avon, England
[2] Johnson Matthey Catalysts, Billingham TS23 1LB, Cleveland, England
关键词
connectivity; entrapment; hysteresis; percolation; porous media;
D O I
10.1002/ppsc.200400925
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Combinations of gas sorption and mercury porosimetry experiments have been run in series on the same sample. This has been achieved by freezing entrapped mercury in place before a subsequent gas sorption experiment was carried out. Several different bidisperse materials with similarly shaped mercury intrusion curves and similar levels of mercury entrapment have been studied. The entrapment of mercury within certain pores in the porous medium can often lead to marked changes in the shape of the gas sorption hysteresis loop between the data obtained prior and subsequent to porosimetry. It was found that the degree of the change of shape of the sorption hysteresis loops differed markedly between different materials. The analysis of the gas sorption hysteresis loops using percolation theory has allowed information to be obtained on the pore length distribution, and/or the distribution of pore co-ordination number and the spatial arrangement of pores within the sample, in addition to the pore connectivity and lattice size usually obtained. The interfaced experiments have also allowed the internal consistency of analysis methods based on percolation theory to be tested, semi-empirical alternatives to the Washburn Equation for the analysis of raw mercury porosimetry data to be independently validated, and the mechanisms of mercury entrapment in various samples to be determined.
引用
收藏
页码:138 / 148
页数:11
相关论文
共 50 条
  • [1] A hierarchical structural model for the interpretation of mercury porosimetry and nitrogen sorption
    Rigby, SP
    [J]. JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2000, 224 (02) : 382 - 396
  • [2] Characterisation of porous solids using integrated nitrogen sorption and mercury porosimetry
    Rigby, SP
    Fletcher, RS
    Riley, SN
    [J]. CHEMICAL ENGINEERING SCIENCE, 2004, 59 (01) : 41 - 51
  • [3] Integrating gas sorption with mercury porosimetry
    Rigby, SP
    Watt-Smith, MJ
    Fletcher, RS
    [J]. ADSORPTION-JOURNAL OF THE INTERNATIONAL ADSORPTION SOCIETY, 2005, 11 (Suppl 1): : 201 - 206
  • [4] Integrating Gas Sorption with Mercury Porosimetry
    Sean P. Rigby
    Matthew J. Watt-Smith
    Robin S. Fletcher
    [J]. Adsorption, 2005, 11 : 201 - 206
  • [5] PORE STRUCTURE OF HYDRATED CEMENT DETERMINED BY MERCURY POROSIMETRY AND NITROGEN SORPTION TECHNIQUES
    ABDELJAWAD, Y
    HANSEN, W
    [J]. PORE STRUCTURE AND PERMEABILITY OF CEMENTITIOUS MATERIALS, 1989, 137 : 105 - 118
  • [6] EFFECT OF POROUS STRUCTURE ON THE DETERMINATION OF PORE-SIZE DISTRIBUTION BY MERCURY POROSIMETRY AND NITROGEN SORPTION
    ZGRABLICH, G
    MENDIOROZ, S
    DAZA, L
    PAJARES, J
    MAYAGOITIA, V
    ROJAS, F
    CONNER, WC
    [J]. LANGMUIR, 1991, 7 (04) : 779 - 785
  • [7] Porosity analysis of some poly(styrene/divinylbenzene)beads by nitrogen sorption and mercury intrusion porosimetry
    H. Deleuzel
    X. Schultze
    D. C. Sherrington
    [J]. Polymer Bulletin, 2000, 44 : 179 - 189
  • [8] Porosity analysis of some poly(styrene/divinylbenzene) beads by nitrogen sorption and mercury intrusion porosimetry
    Deleuze, H
    Schultze, X
    Sherrington, DC
    [J]. POLYMER BULLETIN, 2000, 44 (02) : 179 - 186
  • [9] Fractal analysis of bentonite modified with heteropoly acid using nitrogen sorption and mercury intrusion porosimetry
    Petrovic, Srdan P.
    Vukovic, Zorica M.
    Novakovic, Tatjana B.
    Nedic, Zoran P.
    Rozic, Ljiljana S.
    [J]. JOURNAL OF THE SERBIAN CHEMICAL SOCIETY, 2011, 76 (10) : 1403 - 1410
  • [10] Influence of Drying on the Microstructure of Hardened Cement Paste: A Mercury Intrusion Porosimetry, Nitrogen Sorption and SAXS Study
    Bogner, Andreas
    Schatz, Johanna
    Dehn, Frank
    Mueller, Harald S.
    [J]. JOURNAL OF ADVANCED CONCRETE TECHNOLOGY, 2020, 18 (03) : 83 - 94