The research of uranium monoxide-oxide dissolution process in nitric acid [Electronic resource] / A. S. Kozyrev, T. G. Shikerun, A. S. Ryabov [et al.]

Уровень набора: (RuTPU)RU\TPU\book\169973, Bulletin of the Tomsk Polytechnic University / Tomsk Polytechnic University (TPU) = 2006-2007Альтернативный автор-лицо: Kozyrev, A. S.;Shikerun, T. G.;Ryabov, A. S.;Shamin, V. I.;Mikhailova, N. A.;Romanov, M. E.;Buinovsky (Buynovskiy, Buinovskii), A. S., chemist, Professor of Tomsk Polytechnic University, Doctor of Technical Sciences, 1940-, Alexander Sergeevich;Makaseev, Yu. N.Язык: английский ; оригинала, русский.Страна: Россия.Описание: 1 файл (605 Кб)Серия: ChemistryРезюме или реферат: The kinetics of concentrates of uranium monoxide-oxide dissolution process by nitric acid solutions of 5...9 mole/l in the range of 11...90 °C has been studied. It is stated that initial nitric acid concentration increasing results in some uranium dissolution degree increasing only at the first process stage. Temperature increasing significantly raises uranium dissolution degree at the first stage as well. Uranium dissolution degree increases for all studied temperatures with increasing of the process period. The main feature of the studied process is that while dissolving uranium monoxide-oxide the behavior of iron, molybdenum, silicon additives is adequate to that of uranium. The equation of the reducing sphere describes the uranium leaching process from its nitric acid concentrates.Примечания о наличии в документе библиографии/указателя: [Bibliography: p. 22 (10 titles)].Тематика: dissolution processes | concentrates | uranium monoxide-oxide | nitric acid | additives | iron oxides | molybdenum oxides | silicon oxides | equation | электронный ресурс Ресурсы он-лайн:Щелкните здесь для доступа в онлайн
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[Bibliography: p. 22 (10 titles)]

The kinetics of concentrates of uranium monoxide-oxide dissolution process by nitric acid solutions of 5...9 mole/l in the range of 11...90 °C has been studied. It is stated that initial nitric acid concentration increasing results in some uranium dissolution degree increasing only at the first process stage. Temperature increasing significantly raises uranium dissolution degree at the first stage as well. Uranium dissolution degree increases for all studied temperatures with increasing of the process period. The main feature of the studied process is that while dissolving uranium monoxide-oxide the behavior of iron, molybdenum, silicon additives is adequate to that of uranium. The equation of the reducing sphere describes the uranium leaching process from its nitric acid concentrates

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