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The thermodynamics and kinetics of calcite crystallization : baseline for understanding biomineral formationTeng, Hui Henry 05 1900 (has links)
No description available.
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Application of dynamic analysis of mineral grains to some structural problems in the Empire Mountains, Pima County, ArizonaTarman, Donald Wayne, 1937- January 1975 (has links)
No description available.
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Effect of strontium on calcite growth rates under varying calcium-to-carbonate ratiosBracco, Jacquelyn Nicole 06 April 2012 (has links)
Growth and dissolution of the mineral calcite is important for prediction and control of surface and subsurface water quality, calculation of past sea-surface temperatures using paleoenvironmental proxies, and sequestration of contaminants through engineered calcite precipitation. At high concentrations of strontium, calcite growth is known to be inhibited, but the mechanism by which strontium inhibits growth is not well understood. Seeking to better understand this mechanism, atomic force microscopy is used with a flow-through fluid cell to measure real time growth rates of the obtuse and acute monomolecular step orientations on the calcite surface. Growth was measured at two saturation indices as a function of the ratio of the concentrations of aqueous calcium-to-carbonate and varying aqueous strontium concentration. It was found that the amount of strontium required to inhibit growth correlated with the aqueous calcium concentration, but did not correlate with carbonate concentration. This suggests that strontium inhibits attachment of calcium, but not carbonate, during growth. Analytical models of nucleation and propagation of steps are expanded from previous studies to capture multiple saturation indices.
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Microbial CaCO₃ precipitation for the production of biocement /Whiffin, Victoria S. January 2004 (has links)
Thesis (Ph.D)--Murdoch University, 2004. / Thesis submitted to the Division of Science and Engineering. Includes bibliographical references (leaves 136-144).
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X-ray interfacial crystallography of water on calcite /Geissbühler, Marc Phillip, January 2000 (has links)
Thesis (Ph. D.)--University of Washington, 2000. / Vita. Includes bibliographical references (p. 166-172).
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