Dissolution of uranium oxides from simulated environmental swipes using ammonium bifluoride

Author:

Meyers Lisa A.,Yoshida Thomas M.,Chamberlin Rebecca M.,Xu Ning

Funder

Los Alamos National Laboratory

Publisher

Springer Science and Business Media LLC

Subject

Health, Toxicology and Mutagenesis,Public Health, Environmental and Occupational Health,Spectroscopy,Pollution,Radiology Nuclear Medicine and imaging,Nuclear Energy and Engineering,Analytical Chemistry

Reference16 articles.

1. Barinaga CJ, Hager GH, Hart GL, Koppenaal DW, Marcus RK, Jones SM, and Manard BT (2014) Toward a fieldable atomic mass spectrometer for safeguard applications: sample preparation and ionization. 12th Symposium on International Safeguards, IAEA, Vienna, Austria, CN-220-317

2. Marcus RK, Quarles CD, Barinaga CJ, Carado AJ, Koppenaal DW (2011) Liquid sampling-atmospheric pressure glow discharge ionization source for elemental mass spectrometry. Anal Chem 83:2425–2429

3. Inoue A, Tsujino T (1984) Dissolution rates of U3O8 powders in nitric acid. Ind Eng Chem Process Des Dev 23:122–125

4. FitzPatrick RJ, Foreman TM (1992) Experiences with hydrochloric acid dissolution of uranium and plutonium oxides, both pure and in scrap material. Los Alamos National Laboratory LA-CP-92-85

5. Murty BN, Yadav RB, Ramamurthy CK, Syamsundar S (1991) Spectrophotometric determination of the oxygen to uranium ratios in uranium oxides based on the dissolution in sulphuric acid. Talanta 38:1335–1340

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