Determination of neptunium-237 in complex matrices by high-resolution inductively coupled plasma--atomic multielement emission spectroscopy (ICP--AMES)
Edward L. DeKalb, M.C. Edelson
Abstract
Open-access reader
Edward L. DeKalb, M.C. Edelson
Abstract
Open-access reader
Np-237 is determined sensitively by inductively coupled plasma -- atomic multielement emission spectroscopy (ICP-AMES). Detection limits of intense Np emission lines and the hyperfine broadening of these lines are reported. The most sensitive line, at 382.9 nm, has a detection limit of 25 ppb (i.e., 25 ng/ml) and is split by hyperfine effects into six resolvable components. Lines at 430.7 nm and 382.9 nm can be used to determine Np in complex U-containing solutions, such as spent fuel dissolver solution, at concentrations of 0.05 and 0.1% (relative to U) respectively. ICP-AMES, with a photodiode array detector, is used for real-time, simultaneous, multielemental monitoring of solutions eluting from ion-exchange columns. The added selectively provided by combining ion-exchange chromatography with high-resolution ICP emission spectroscopy results in improved Np detectability. Np, in a simulated D5 fuel dissolver solution, was determined at a concentration of <50 ppm relative to U. The detection limit for determining Np in a U-rich matrix by monitoring its emission at 382.9 nm is estimated to be 1 ppm relative to U. 29 refs., 25 figs., 8 tabs.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Np-237 is determined sensitively by inductively coupled plasma -- atomic multielement emission spectroscopy (ICP-AMES). Detection limits of intense Np emission lines and the hyperfine broadening of these lines are reported. The most sensitive line, at 382.9 nm, has a detection limit of 25 ppb (i.e., 25 ng/ml) and is split by hyperfine effects into six resolvable components. Lines at 430.7 nm and 382.9 nm can be used to determine Np in complex U-containing solutions, such as spent fuel dissolver solution, at concentrations of 0.05 and 0.1% (relative to U) respectively. ICP-AMES, with a photodiode array detector, is used for real-time, simultaneous, multielemental monitoring of solutions eluting from ion-exchange columns. The added selectively provided by combining ion-exchange chromatography with high-resolution ICP emission spectroscopy results in improved Np detectability. Np, in a simulated D5 fuel dissolver solution, was determined at a concentration of <50 ppm relative to U. The detection limit for determining Np in a U-rich matrix by monitoring its emission at 382.9 nm is estimated to be 1 ppm relative to U. 29 refs., 25 figs., 8 tabs.
Key concepts: Detection limit, Inductively coupled plasma, Analytical Chemistry (journal), Chemistry, Spectroscopy, Inductively coupled plasma atomic emission spectroscopy, Hyperfine structure, Atomic emission spectroscopy