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Article
X-Ray Photoelectron Spectroscopic Studies of Dolomite Surfaces Exposed to Undersaturated and Supersaturated Aqueous Solutions
Geochimica et Cosmochimica Acta
  • Xiaoming Hu, Wright State University - Main Campus
  • Pratik Joshi, Wright State University - Main Campus
  • Sharmila M. Mukhopadhyay, Wright State University - Main Campus
  • Steven R. Higgins, Wright State University - Main Campus
Document Type
Article
Publication Date
7-1-2006
Abstract

Cleaved surfaces of dolomite were studied using ex-situ X-ray photoelectron spectroscopy (XPS) following exposure of the surfaces to various experimental conditions. Dolomite samples exposed to air, to a highly undersaturated solution (0.1 M NaCl, pH = 9), and to solution with a supersaturation (-Delta mu/kT) of 5.5 (pH = 9) were investigated with semiquantitative methods of analysis to ascertain the degree of non-stoichiometry resulting at the dolomite surface from reactive conditions. It was found that the dolomite cleavage surface in undersaturated solution was not altered significantly from the stoichiometric surface termination. The composition of the cleaved surface after exposure to supersaturated solution, a surface known to have self-limiting growth characteristics under similar conditions, was found to be Ca2+ rich (CaxMg2-x(CO3)(2), 1.7 > x > 1.3). The observations, while underscoring differences in hydration/dehydration kinetics of the two alkaline earth cations, suggest that achievement of equilibrium at dolomite-water interfaces may be subject to significant barriers from both undersaturated and supersaturated solutions.

Comments

Copyright © 2006, Meteoritical Society

DOI
10.1016/j.gca.2006.04.022
Citation Information
Xiaoming Hu, Pratik Joshi, Sharmila M. Mukhopadhyay and Steven R. Higgins. "X-Ray Photoelectron Spectroscopic Studies of Dolomite Surfaces Exposed to Undersaturated and Supersaturated Aqueous Solutions" Geochimica et Cosmochimica Acta Vol. 70 Iss. 13 (2006) p. 3342 - 3350 ISSN: 0016-7037
Available at: http://works.bepress.com/sharmila_mukhopadhyay/1/