Determination of Pu Oxidation states in the HCl Media Using with UV-Visible Absorption Spectroscopic Techniques
Myung-Ho Lee, Mu-Yeol Suh, Kyoung-Kyun Park, Yeong-Jae Park, Wonho Kim
Abstract
Myung-Ho Lee, Mu-Yeol Suh, Kyoung-Kyun Park, Yeong-Jae Park, Wonho Kim
Abstract
The spectroscopic characteristics of Pu (III, IV, V, VI) in the HCl media were investigated by measuring Pu oxidation states using a UV-Vis-NIR spectrophotometer (400-1200 nm) after adjusting Pu oxidation states with oxidation/reduction reagents. Pu in stock solution was reduced to Pu(III) with HCl, and oxidized to Pu(IV) and Pu(VI) with and , respectively. Also, Pu(V) was adjusted in the Pu(VI) solution with HCl. The major absorption peaks of Pu (IV) and Pu(III) were measured in the 470 m and 600 nm, respectively. The major absorption peaks of Pu (VI) and Pu(V) were measured in the 830 nm and 1135 nm, respectively. There was not found to be significant changes of UV-Vis absorption spectra for Pu(III), Pu(IV) and Pu(VI) with aging time, except that an unstable Pu(V) immediately reduced to Pu(III).
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The spectroscopic characteristics of Pu (III, IV, V, VI) in the HCl media were investigated by measuring Pu oxidation states using a UV-Vis-NIR spectrophotometer (400-1200 nm) after adjusting Pu oxidation states with oxidation/reduction reagents. Pu in stock solution was reduced to Pu(III) with HCl, and oxidized to Pu(IV) and Pu(VI) with and , respectively. Also, Pu(V) was adjusted in the Pu(VI) solution with HCl. The major absorption peaks of Pu (IV) and Pu(III) were measured in the 470 m and 600 nm, respectively. The major absorption peaks of Pu (VI) and Pu(V) were measured in the 830 nm and 1135 nm, respectively. There was not found to be significant changes of UV-Vis absorption spectra for Pu(III), Pu(IV) and Pu(VI) with aging time, except that an unstable Pu(V) immediately reduced to Pu(III).
Key concepts: Chemistry, Absorption (acoustics), Nuclear chemistry, Reagent, Absorption spectroscopy, Analytical Chemistry (journal), Materials science, Physical chemistry