Информация об авторе

Puzikov, E. A.

Выпуск Раздел Название Файл
Том 58, № 2 (2016) Article Effect of salting-out agents on nitric acid distribution between liquid and vapor in the course of evaporation of nitric acid radioactive waste
Том 58, № 3 (2016) Article Influence of pressure (temperature) on the nitric acid distribution between the liquid and vapor in the course of evaporation of nitric acid radioactive waste
Том 58, № 4 (2016) Article Interaction of thorium and plutonium with pertechnetic acid in the course of extraction from nitric acid solutions with tributyl phosphate in diluent and its mathematical description
Том 58, № 5 (2016) Article Mathematical model of precipitation of barium and strontium nitrates from nitric acid solutions and their mutual effect
Том 59, № 2 (2017) Article Mathematical modeling of extraction of nitric acid, actinides, and fission products into 30% TBP in halogenated diluents using A.M. Rozen’s model
Том 59, № 4 (2017) Article Influence of temperature on Pu(IV) extraction from nitric acid solutions into 30% TBP, considered within the framework of A.M. Rozen’s model and of a new (multireaction) model
Том 59, № 5 (2017) Article Simulation of the dynamic beyond-design-basis regime in an extraction–scrubbing unit consisting of mixer–settlers or centrifugal contactors in reprocessing spent nuclear fuel from nuclear power plants and of impurex process
Том 59, № 6 (2017) Article Beyond-design-basis regimes of uranium stripping and of carbonate regeneration of the solvent
Том 61, № 4 (2019) Article Description of the Extraction of Rare Earth Element Nitrates from Weakly Acidic Solutions with Concentrated Tributyl Phosphate Solutions
Том 61, № 5 (2019) Article Use of a Unified Model with TBP Dilution for Describing the Extraction of Nitric Acid and Hexavalent Actinide Nitrates in Multicomponent Nitrate Systems
Том 61, № 6 (2019) Article Description of the Extraction of Trivalent REE and TPE Nitrates with Tributyl Phosphate and Its Solutions in Paraffins in the Presence of Nitric Acid and Salting-out Agents Using a Unified Model

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