| 1 |
J.I. Kim, “Significance of Actinide Chemistry for the Long-Term Safety of Waste Disposal”, Nucl. Eng. Technol., 38(6), 459-482 (2006). |
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| 2 |
Recent advances in aqueous actinide chemistry and thermodynamics.  |
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| 3 |
Mineral-water interface reactions of actinides.  |
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| 4 |
M.H. Baik, T.J. Park, I.Y. Kim, and K.W. Choi, “Research Status and Roles of Natural Analogue Studies in the Radioactive Waste Disposal”, J. Nucl. Fuel Cycle Waste Technol., 11(2), 133-156 (2013). |
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| 5 |
J.Y. Lee and J.I. Yun, “Temperature-Dependent Hydrolysis Reactions of U(VI) Studies by TRLFS”, J. Nucl. Fuel Cycle Waste Technol., 1(1), 65-73 (2013). |
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| 6 |
Uranium Speciation in Solution by Time-Resolved Laser-Induced Fluorescence  |
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| 7 |
Uranyl(VI) carbonate complex formation: Validation of the Ca~2UO~2(CO~3)~3(aq.) species  |
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| 8 |
Formation of ternary CaUO2(CO3)3(2-) and Ca2UO2(CO3)3(aq) complexes under neutral to weakly alkaline conditions.  |
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| 9 |
Determination of uranium concentration and speciation in natural granitic groundwater using TRLFS  |
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| 10 |
J.K. Lee, M.H. Baik, and J. Jeong, “Development of Sorption Database (KAERI-SDB) for the Safety Assessment of Radioactive Waste Disposal”, J. Nucl. Fuel Cycle Waste Technol., 11(1), 41-54 (2013). |
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| 11 |
Use of spectroscopic techniques for uranium(VI)/montmorillonite interaction modeling.  |
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| 12 |
R. Drot, J. Roques, and É. Simoni, “Molecular approach of the uranyl/mineral interaction phenomena”, C. R. Chimie, 10, 1078-1091 (2007). |
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| 13 |
J. Wheeler and J.K. Thomas, “Photochemistry of the Uranyl Ion in Colloidal Silica Solution”, J. Phys. Chem. 88, 750-754 (1984). |
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| 14 |
H. Moll, G. Geipel, V. Brendler, G. Berhard, and H. Nitsche, “Interaction of uranium(VI) with silicic acid in aqueous solutions studied by time-resolved laserinduced fluorescence spectroscopy (TRLFS)”, J. Alloys Compd., 271-273, 765-768 (1998). |
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| 15 |
Uranyl Surface Speciation on Silica Particles Studied by Time-Resolved Laser-Induced Fluorescence Spectroscopy  |
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| 16 |
C.J. Chisholm-Brause, J.M. Berg, K.M. Little, R.A. Matzner, and D.E. Morris, “Uranyl sorption by smectites:spectroscopic assessment of thermodynamic modelling”, J. Colloid Interface Sci., 277, 366-382 (2004). |
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| 17 |
U(VI)-Kaolinite Surface Complexation in Absence and Presence of Humic Acid Studied by TRLFS  |
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| 18 |
Luminescence of uranium-bearing opals: Origin and use as a pH record  |
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| 19 |
C.J. Chisholm-Brause, J.M. Berg, R.A. Matzner, and D.E. Morris, J. “Uranium(VI) Sorption Complexes on Montmorillonite as a Function of Solution Chemistry”, Colloid Interface Sci., 233, 38-49 (2001). |
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| 20 |
N. Baumann, V. Brendler, T. Arnold, G. Geipel, and G. Bernhard, “Uranyl sorption onto gibbsite studied by time-resolved laser-induced fluorescence spectroscopy (TRLFS)”, J. Colloid Interface Sci., 290, 318-324 (2005). |
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| 21 |
Adsorbed U(VI) surface species on muscovite identified by laser fluorescence spectroscopy and transmission electron microscopy.  |
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| 22 |
Fluorescence spectroscopy of U(VI)-silicates and U(VI)-contaminated Hanford sediment  |
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| 23 |
Characterization of Hydrous Uranyl Silicate by EXAFS  |
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| 24 |
T. Reich, H. Moll, T. Arnold, M.A. Denecke, C. Hennig, G. Geipel, G. Bernhard, H. Nitsche, P.G. Allen, J.J. Bucher, N.M. Edelstein, and D.K. Shuh, “An EXAFS study of uranium(VI) sorption onto silica gel and ferrihydrite”, J. Electron Spectrosc. Relat. Phenom., 96, 237-243 (1998). |
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| 25 |
E.R. Sylwester, E.A. Hudson, and P.G. Allen, “The structure of uranium (VI) sorption complexes on silica, alumina, and montmorillonite”, Geochim. Cosmochim. Acta, 64, 2431-2438 (2000). |
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| 26 |
An EXAFS and TRLFS investigation on uranium(VI) sorption to pristine and leached albite surfaces  |
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| 27 |
Uranium incorporation into amorphous silica.  |
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| 28 |
E.C. Jung, M.H. Baik, H.R. Cho, H.K. Kim, and W. Cha, “Study on the Interaction of U(VI) Species With Natural Organic Matters in KURT Groundwater”, J. Nucl. Fuel Cycle Waste Technol., 15(2), 101-116 (2017). |
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| 29 |
R. Guilaumont, T. Fanghänel, V. Neck, J. Fuger, D.A. Palmer, I. Grenthe, and M.H. Rand, “Update on the Chemical Thermodynamics of Uranium, Neptunium, Plutonium, Americium, and Technetium”, OECDNEA, Elsevier (2003). |
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| 30 |
E.C. Jung, H.R. Cho, H.K. Kim, and W. Cha, “Laser-Based Spectroscopic Studies of Actinide Complexes”, in The Heaviest Metals, Science and Technology of the Actinides and Beyond; Edited by W. J. Evans, T. P. Hanusa, published by John Wiley & Sons, Ltd., 209-222 (2019). |
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