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Updated: Jun 27, 2026

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Translational diffusion of water and its dependence on temperature in charged and uncharged clays: A neutron
Fátima González Sánchez1, Fanni Jurányi, Thomas Gimmi
1Laboratory for Waste Management, Paul Scherrer Institut, CH-5232 Villigen PSI, Switzerland. fatima_oti@yahoo.com
Abstract:
The water diffusion in four different, highly compacted clays [montmorillonite in the Na- and Ca-forms, illite in the Na- and Ca-forms, kaolinite, and pyrophyllite (bulk dry density rho(b)=1.85+/-0.05 gcm(3))] was studied at the atomic level by means of quasielastic neutron scattering. The experiments were performed on two time-of-flight spectrometers and at three different energy resolutions [FOCUS at SINQ, PSI (3.65 and 5.75 A), and TOFTOF at FRM II (10 A)] for reliable data analysis and at temperatures between 27 and 95 degrees C. Two different jump diffusion models were used to describe the translational motion. Both models describe the data equally well and give the following ranking of diffusion coefficients: Na-montmorillonite
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