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All abstracts by Donald Palmer in conference series: Goldschmidt

(2010) Experimental Studies on the Thermodynamics and Kinetics of Fluid-Mineral Interactions: Applications to Hydrothermal Systems and Geological CO2 Sequestration
Bénézeth P, Palmer D, Wesolowski D, Schott J & Dandurand J-L

(2007) The Rutile (110)-Electrolyte Solution Interface to 250C: A Surface Complexation Synthesis of Titration, ab Initio, MD and X-Ray Spectroscopic Results
Machesky M, Ridley M, Wesolowski D, Palmer D, Predota M, Vlcek L, Kubicki J, Sofo J, Bandura A & Zhang Z

(2005) Experimental Approaches to Predict the Behavior of Liquid Films
Palmer D, Anovitz L, Cole D, Fayek M, Gruszkiewicz M, Riciputi L, Wesolowski D & Wilson L

(2004) Ion Adsorption at the Rutile-Water Interface to Hydrothermal Conditions
Machesky M, Wesolowski D, Ridley M, Palmer D, Fenter P, Zhang Z, Kubicki J & Predota M

(2002) The Influence of Temperature on Ion Adsorption Phenomena
Machesky M, Ridley M, Wesolowski D & Palmer D

(2002) Geochemistry of Ostracode Calcite: Empirical Calibration of 3 Species from Page Pond, Ohio, U.S.A
Ito E, Bacon S, Smith A & Palmer D

(2001) Solubility and Surface Adsorption Characteristics of Metal Oxides to High Temperature
Wesolowski DJ, Machesky ML, Ziemniak SE, Xiao C, Palmer DA, Anovitz LM & Bénézeth P

(2001) Aqueous Aluminum Chemistry: Impact on Energy Production and Consumption
Palmer DA, Bénézeth P, Wesolowski DJ & Holmes HF

(2001) Physical Chemistry of Coexisting Phases in Geothermal Systems
Simonson JM, Palmer DA & Gruszkiewicz MS

(2001) Rutile Surface Charge and Ion Adsorption Studies to 250℃
Ridley MK, Machesky ML, Wesolowski DJ & Palmer DA

(2000) Surface Complexation Modelling of the Adsorption of Ca(II) and Nd(III) at the Rutile-Water Interface to 250 C
Ridley M, Machesky M, Wesolowski D & Palmer D

(2000) On the Temperature Dependence of Intrinsic Surface Protonation Equilibrium Constants: An Extension of the Revised MUSIC Model
Machesky M, Wesolowski D, Palmer D & Ridley M

(2000) Metal Complexation Studies in Low-Temperature, Acid-Sulphate Waters Using Mercury/Mercurous Sulphate Concentration Cells
Wesolowski DJ, Xiao C & Palmer DA

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