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Truesdale, V. W. 2008. Shrinking Sphere Kinetics for Batch Dissolution of Mixed Particles of a Single Substance at High Under-Saturation: Validation with Sodium Chloride, but with Biogenic Silica in Mind. Aquatic Geochemistry, 14, 359-379. Truesdale, V. W. 2008. The biogeochemical effect of seaweeds upon close-to natural concentrations of dissolved iodate and iodide in seawater - Preliminary study with Laminaria digitata and Fucus serratus. Estuarine Coastal and Shelf Science, 78, 155-165. Zic, V., Truesdale, V. W. & Cukrov, N. 2008. The distribution of iodide and iodate in anchialine cave waters - Evidence for sustained localised oxidation of iodide to iodate in marine water. Marine Chemistry, 112, 168-178. Truesdale, V. W. 2007. Batch dissolution kinetics: The shrinking sphere model with salts and its potential application to biogenic silica. Aquatic Geochemistry, 13, 267-287. Truesdale, V.W. (2007). Toward a biogeochemical understanding of the effect of Laminaria digitata and Fucus serratus on close-to natural concentrations of dissolved iodate and iodide in seawater. Submitted, Estuarine, Coastal and Shelf Science. In press. Truesdale, V.W. (2007). Batch dissolution kinetics: the shrinking sphere model with salts and its potential application to biogenic silica. Aquatic Geochemistry. In press. Truesdale, V.W. (2007). On the feasibility of some photochemical reactions of iodide in seawater. Marine Chemistry. 104, 266-281. Waite, T.J., Truesdale, V.W. and Ólafsson, J. (2006). The distribution of dissolved inorganic iodine in the seas around Iceland. Marine Chemistry, 101, 54-67. Greenwood, J. E., Truesdale, V.W. and Rendell, A.R. (2005). Toward an understanding of biogenic-silica dissolution in seawater - An initial rate approach applied between 40 and 90oC. 11, 1-20.

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