Separation Science and Technology · 1981 · 25 citations · 2 references
Solvent ExtractionExtractive MetallurgyChemical EngineeringEnvironmental ChemistryUranium ExtractionEngineeringEnvironmental EngineeringUranium AdsorptionSelective SeparationEnvironmental RemediationSeparation TechnologyMarine ChemistryWater TreatmentChemisorptionAdsorptionChemistryMagnetic AdsorbentMineral Processing
Abstract A new process for the extraction of uranium from seawater was developed. In the process, uranium adsorption is effected using powdered magnetic adsorbents; the adsorbents are then separated from seawater using magnetic separation technology. This process is superior to a column method using a granulated hydrous titanium oxide adsorber bed in the following ways: (1) a higher rate of adsorption is realized because smaller particles are used in the uranium adsorption; and (2) blocking, which is inevitable in an adsorber bed, is eliminated. The composite hydrous titanium-iron oxide as a magnetic adsorbent having high uranium adsorption capacity and magnetization can be prepared by adding urea to a mixed solution of titanium sulfate and ferrous sulfate. Adsorption and desorption of uranium and the removal of the adsorbent using a small-scale uranium extraction plant (about 15 m3/d) is reported, and the feasibility of uranium extraction from seawater by this process is demonstrated.
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Extraction of Uranium from Sea Water
R. V. Davies, James E. Kennedy, R. W. McIlroy et al. · Nature · 1964 · 365 citations
Environmental Radiochemistry, Extractive Metallurgy, Engineering +4