Periodic density functional theory study of the Raman spectrum of the hydrated uranyl oxyhydroxide mineral becquerelite
Author:
Publisher
Springer Science and Business Media LLC
Subject
Physical and Theoretical Chemistry
Link
http://link.springer.com/content/pdf/10.1007/s00214-019-2437-y.pdf
Reference62 articles.
1. Baker RJ (2014) Uranium minerals and their relevance to long term storage of nuclear fuels. Coord Chem Rev 266–267:123–136
2. Finch RJ, Ewing RC (1992) The corrosion of uraninite under oxidizing conditions. J Nucl Mater 190:133–156
3. Wronkiewicz DJ, Bates JK, Gerding TJ, Veleckis E, Tani BS (1992) Uranium release and secondary phase formation during unsaturated testing of UO2 at 90 °C. J Nucl Mater 190:107–127
4. Wronkiewicz DJ, Bates JK, Wolf SF, Buck EC (1996) Ten-year results from unsaturated drip tests with UO2 at 90°C: implications for the corrosion of spent nuclear fuel. J Nucl Mater 238:78–95
5. Pearcy EC, Prikryl JD, Murphy WM, Leslie BW (1994) Alteration of uraninite from the Nopal I deposit, Peña Blanca District, Chihuahua, Mexico, compared to degradation of spent nuclear fuel in the proposed US high-level nuclear waste repository at Yucca Mountain, Nevada. Appl Geochem 9:713–732
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