abstract: Historically, uranium has received intense study of its chemical and isotopic properties for use in the nuclear industry, but has been largely ignored by geoscientists despite properties that make it an intriguing target for geochemists and cosmochemists alike. Uranium was long thought to have an invariant 238U/235U ratio in natural samples, making it uninteresting for isotopic work. However, recent advances in mass spectrometry have made it possible to detect slight differences in the 238U/235U ratio, creating many exciting new opportunities for U isotopic research. Using uranium ore samples from diverse depositional settings from around the world, it is shown that the low-temperature redox transition of uranium (U6+ to U4+) caus...
© 2019, Pleiades Publishing, Ltd. Abstract: The trend fractionation of the 238U and 235U isotopes an...
© 2019, Pleiades Publishing, Ltd. Abstract: The trend fractionation of the 238U and 235U isotopes an...
Investigations of 'stable' uranium isotope fractionation during low temperature, redox transformatio...
For several decades, an invariable 238U/235U ratio of 137.88 was assumed throughout the solar system...
For several decades, an invariable 238U/235U ratio of 137.88 was assumed throughout the solar system...
This study applies high precision 238U/235U measurement techniques two three geologic settings: basa...
The present-day 238U/235U ratio has fundamental implications for uranium-lead geochronology and cosm...
Uranium is a contaminant of interest due to its toxicity and mobility in groundwater. It is a redox...
Uranium is the heaviest naturally occurring element and isotope fractionation between 235U and 238U ...
Observations of variations in the ^(238)U/^(235)U ratio at the 0.1‰ level in both terrestrial [1] an...
Observations of variations in the ^(238)U/^(235)U ratio at the 0.1‰ level in both terrestrial [1] an...
Uranium is the heaviest naturally occurring element and isotope fractionation between 235U and 238U ...
High-temperature condensates found in meteorites display uranium isotopic variations (^(235)U/^(238)...
High-temperature condensates found in meteorites display uranium isotopic variations (^(235)U/^(238)...
High-temperature condensates found in meteorites display uranium isotopic variations (^(235)U/^(238)...
© 2019, Pleiades Publishing, Ltd. Abstract: The trend fractionation of the 238U and 235U isotopes an...
© 2019, Pleiades Publishing, Ltd. Abstract: The trend fractionation of the 238U and 235U isotopes an...
Investigations of 'stable' uranium isotope fractionation during low temperature, redox transformatio...
For several decades, an invariable 238U/235U ratio of 137.88 was assumed throughout the solar system...
For several decades, an invariable 238U/235U ratio of 137.88 was assumed throughout the solar system...
This study applies high precision 238U/235U measurement techniques two three geologic settings: basa...
The present-day 238U/235U ratio has fundamental implications for uranium-lead geochronology and cosm...
Uranium is a contaminant of interest due to its toxicity and mobility in groundwater. It is a redox...
Uranium is the heaviest naturally occurring element and isotope fractionation between 235U and 238U ...
Observations of variations in the ^(238)U/^(235)U ratio at the 0.1‰ level in both terrestrial [1] an...
Observations of variations in the ^(238)U/^(235)U ratio at the 0.1‰ level in both terrestrial [1] an...
Uranium is the heaviest naturally occurring element and isotope fractionation between 235U and 238U ...
High-temperature condensates found in meteorites display uranium isotopic variations (^(235)U/^(238)...
High-temperature condensates found in meteorites display uranium isotopic variations (^(235)U/^(238)...
High-temperature condensates found in meteorites display uranium isotopic variations (^(235)U/^(238)...
© 2019, Pleiades Publishing, Ltd. Abstract: The trend fractionation of the 238U and 235U isotopes an...
© 2019, Pleiades Publishing, Ltd. Abstract: The trend fractionation of the 238U and 235U isotopes an...
Investigations of 'stable' uranium isotope fractionation during low temperature, redox transformatio...