• Title of article

    Nanometer-scale pore fluid distribution and drying damage in preserved clay cores from Belgian clay formations inferred by BIB-cryo-SEM

  • Author/Authors

    Desbois، نويسنده , , Guillaume and Urai، نويسنده , , Janos L. and Hemes، نويسنده , , Susanne and Brassinnes، نويسنده , , Stephane and De Craen، نويسنده , , Mieke and Sillen، نويسنده , , Xavier، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2014
  • Pages
    15
  • From page
    117
  • To page
    131
  • Abstract
    This contribution reports on the distribution of in situ pore-water in preserved clay cores from Belgium (Boom Clay at HADES URF level and clay from the Pittem Member of the Gent Formation) and identification of typical pore-scale damage induced by drying. yo-SEM (Broad Ion beam–cryogenic-SEM) shows that the majority of pores visible at the resolution of SEM (> 50 nm) does not contain water, suggesting that the water content measured by weight loss is located in clay aggregates, in pores < 50 nm. e water-free pores are not expecting in situ clay formation, we conclude that the procedure used to preserve the original clay cores is not fully efficient. Observations of evolution of microstructures before and after drying by sublimation of water point to four types of drying-damages driven by the shrinkage of clay particles. On the one hand, quantification of pore size and pore morphologies before and after drying indicates no significant change in statistical pore characterization, suggesting that quantitative pore morphology studies on a large number of pores performed on dried samples are representative of the preserved core samples. On the other hand, the drying damage observed in this contribution is proposed to be responsible of the changes of fluid flow properties typically measured by other authors on preserved and dried specimens of clays.
  • Keywords
    Pore damage , BIB–cryo-SEM , Boom Clay , Imaging of pore water , Drying
  • Journal title
    Engineering Geology
  • Serial Year
    2014
  • Journal title
    Engineering Geology
  • Record number

    2342708