Swelling transition of a clay induced by heating

Open Access
Authors
  • E.L. Hansen
  • H. Hemmen
  • D.M. Fonseca
  • C. Coutant
  • K.D. Knudsen
  • T.S. Plivelic
  • D. Bonn
  • J.O. Fossum
Publication date 31-08-2012
Journal Scientific Reports
Article number 618
Volume | Issue number 2
Number of pages 4
Organisations
  • Faculty of Science (FNWI) - Institute of Physics (IoP) - Van der Waals-Zeeman Institute (WZI)
Abstract
Clays are of paramount importance for soil stability, but also in applications ranging from oil recovery to composites and hydrogels. Generically, clays are divided into two subclasses: macroscopically swelling, ‘active’ clays that have the capacity for taking up large amounts of water to form stable gels, and ‘passive’ or non-swelling clays; the former stabilize soils whereas the latter are known to lead to landslides. However, it has been unclear so far what mechanisms underlie clay swelling. Here, we report the first observation of a temperature-induced transition from a passive to an active, swelling clay. We propose a simple description of the swelling transition; while net attractive interactions are dominant at low temperatures so that the clay particles remain attached to each other in stacks, at higher temperatures it is energetically favourable for the clay to swell due to the entropy that is gained by counterions which are liberated during swelling.
Document type Article
Note With supplementary information
Language English
Published at https://doi.org/10.1038/srep00618
Downloads
srep00618 (Final published version)
srep00618-s1 (Other version)
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