International audienceMost of the highly radioactive spent nuclear fuel (SNF) around the world is destined for final disposal in deep-mined geological repositories. At the end of the fuel’s useful life in a reactor, about 96% of the SNF is still UO2. Thus, the behaviour of UO2 in SNF must be understood and evaluated under the weathering conditions of geologic disposal, which extend to periods of hundreds of thousands of years. There is ample evidence from nature that many uranium deposits have experienced conditions for which the formation of coffinite, USiO4, has been favoured over uraninite, UO2+x, during subsequent alteration events. Thus, coffinite is an important alteration product of the UO2 in SNF. Here, we present the first evidence...
Coffinite is the dominant ore mineral in the tabular vanadium-uranium ores of the Tony M mine in the...
International audienceDissolution experiments have been performed in order to determine the solubili...
Coffinite, USiO4, can form under reducing conditions from UO2 in contact with silica-rich waters (La...
International audienceMost of the highly radioactive spent nuclear fuel (SNF) around the world is de...
International audienceMost of the highly radioactive spent nuclear fuel (SNF) around the world is de...
Coffinite (USiO{sub 4}) has been found in numerous sedimentary and hydrothermal environments includi...
Samples of natural coffinite (USiO4·nH2O) from Grants uranium region, New Mexico were investigated i...
Coffinite, USiO<sub>4</sub>, is the second most abundant U<sup>4+</sup> mineral on Earth, and its fo...
A mineral assemblage of coffinite, USiO4-TiH2O, n= 0-2, carbonate-fluorapatite (CFAp) and (Ca, Sr)-(...
Coffinite, USiO4, is an important U(IV) mineral, but its thermodynamic properties are not well-const...
Coffinite, USiO4, is an important U(IV) mineral, but its thermodynamic properties are not well-const...
Mobilisation of uranium in geologic environments from UO2 solid phases usually takes place by oxidat...
Mobilisation of uranium in geologic environments from UO2 solid phases usually takes place by oxidat...
Coffinite, USiO4, has been produced by hydrothermal synthesis. The synthesis products, coffinite nan...
Coffinite, USiO4, can form under reducing conditions from UO2 in contact with silica-rich waters (La...
Coffinite is the dominant ore mineral in the tabular vanadium-uranium ores of the Tony M mine in the...
International audienceDissolution experiments have been performed in order to determine the solubili...
Coffinite, USiO4, can form under reducing conditions from UO2 in contact with silica-rich waters (La...
International audienceMost of the highly radioactive spent nuclear fuel (SNF) around the world is de...
International audienceMost of the highly radioactive spent nuclear fuel (SNF) around the world is de...
Coffinite (USiO{sub 4}) has been found in numerous sedimentary and hydrothermal environments includi...
Samples of natural coffinite (USiO4·nH2O) from Grants uranium region, New Mexico were investigated i...
Coffinite, USiO<sub>4</sub>, is the second most abundant U<sup>4+</sup> mineral on Earth, and its fo...
A mineral assemblage of coffinite, USiO4-TiH2O, n= 0-2, carbonate-fluorapatite (CFAp) and (Ca, Sr)-(...
Coffinite, USiO4, is an important U(IV) mineral, but its thermodynamic properties are not well-const...
Coffinite, USiO4, is an important U(IV) mineral, but its thermodynamic properties are not well-const...
Mobilisation of uranium in geologic environments from UO2 solid phases usually takes place by oxidat...
Mobilisation of uranium in geologic environments from UO2 solid phases usually takes place by oxidat...
Coffinite, USiO4, has been produced by hydrothermal synthesis. The synthesis products, coffinite nan...
Coffinite, USiO4, can form under reducing conditions from UO2 in contact with silica-rich waters (La...
Coffinite is the dominant ore mineral in the tabular vanadium-uranium ores of the Tony M mine in the...
International audienceDissolution experiments have been performed in order to determine the solubili...
Coffinite, USiO4, can form under reducing conditions from UO2 in contact with silica-rich waters (La...