2004
DOI: 10.1016/j.gca.2004.02.004
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Transient dissolution patterns on stressed crystal surfaces

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Cited by 17 publications
(17 citation statements)
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“…Surface energy, on the other hand, may drive a minimization of surface roughness through a dissolution-precipitation mechanism. This competition may lead to a surface morphology with a characteristic wavelength (Srolovitz, 1989;Misbah et al, 2004) and explains the observations of grooves or ripples on stressed crystal surfaces in aqueous solutions Koehn et al, 2004). This stress-induced surface instability is known as the so-called Grinfeld instability.…”
Section: Introductionmentioning
confidence: 86%
“…Surface energy, on the other hand, may drive a minimization of surface roughness through a dissolution-precipitation mechanism. This competition may lead to a surface morphology with a characteristic wavelength (Srolovitz, 1989;Misbah et al, 2004) and explains the observations of grooves or ripples on stressed crystal surfaces in aqueous solutions Koehn et al, 2004). This stress-induced surface instability is known as the so-called Grinfeld instability.…”
Section: Introductionmentioning
confidence: 86%
“…Both earlier (Sprunt and Nur, 1977) and later (den Brok and Morel, 2001;Koehn et al, 2004;Morel and den Brok, 2001) studies have shown the effect of strain energy on dissolution and precipitation. If there is a bulk dissolution-precipitation cycle due to temperature changes this would tend to dissolve preferentially at free surfaces with high strain energy, i.e.…”
Section: -1-1-1 Plasticity: Naclmentioning
confidence: 96%
“…Note that this concept is also applied in other geoscience topics with their related specificities where water is under hydrostatic pressure while minerals are submitted to lithostatic pressure. For instance, one can evoke either theoretical and/or experimental studies about the smectite-to-illite transformation during diagenesis (Colten-Bradley, 1987), the formation of stylolites (Passchier and Trouw, 1996), the solution pressure effect (Renard and Ortoleva, 1997;Koehn et al, 2004Koehn et al, , 2006Anzalone et al, 2006) and the crystallization pressure effect Lopez-Acevedo et al, 1997;Scherer, 1999Scherer, , 2004Steiger, 2005a, b;Coussy, 2006;Osselin et al, 2013Osselin et al, , 2014.…”
Section: Thermodynamics Of Chemical Reactivity In Capillary Systemsmentioning
confidence: 99%