Application of community data to surface complexation modeling framework development: Iron oxide protolysis

Author:

Han Sol-ChanORCID,Chang ElliotORCID,Zechel SusanneORCID,Bok FrankORCID,Zavarin Mavrik

Publisher

Elsevier BV

Subject

Colloid and Surface Chemistry,Surfaces, Coatings and Films,Biomaterials,Electronic, Optical and Magnetic Materials

Reference112 articles.

1. K.M. Krupka, D.I. Kaplan, G. Whelan, R.J. Serne, S.V. Mattigod, Understanding variation in partition coefficient, Kd, values Volume II: Review of Geochamistry and Available Kd Values for Cadmium, Cesium, Chromium, Lead, Plutonium, Radon, Strontium, Thorium, Tritium(3H), and Uranium, United States Environmental Protection Agency, Washington, DC, USA, 1999.

2. K.M. Krupka, D.I. Kaplan, G. Whelan, R.J. Serne, S.V. Mattigod, Understanding variation in partition coefficient, Kd, values. Volume I: The Kd Model, Methods of Measurement, and Application of Chemical Reaction Codes, United States Environmental Protection Agency, Washington, DC, USA, 1999.

3. Radionuclide sorption technical assistance activities at the center for nuclear waste regulatory analyses;Bertetti,2011

4. Approaches to surface complexation modeling of Uranium(VI) adsorption on aquifer sediments;Davis;Geochim. Cosmochim. Acta,2004

5. Surface Complexation Modeling of Uranium (VI) Adsorption on Natural Mineral Assemblages;Davis,2001

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