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izvor podataka: crosbi

Synergy of flow injection system and molecular recognition technology products for rapid determination of 89,90Sr and 210Pb (CROSBI ID 300943)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Coha, Ivana ; Dulanská, Silvia ; Tucaković, Ivana ; Grahek, Željko Synergy of flow injection system and molecular recognition technology products for rapid determination of 89,90Sr and 210Pb // Talanta, 225 (2021), 121959, 11. doi: 10.1016/j.talanta.2020.121959

Podaci o odgovornosti

Coha, Ivana ; Dulanská, Silvia ; Tucaković, Ivana ; Grahek, Željko

engleski

Synergy of flow injection system and molecular recognition technology products for rapid determination of 89,90Sr and 210Pb

A rapid, automated separation procedure was developed for radioactive strontium and lead isotope determination. This system includes a portable automated system for the preconcentration and sequential elution of targeting isotopes with an Na2H2EDTA solution from solid phase extraction materials, AnaLig®Sr-01 and SuperLig®620, provided by IBC Technologies. Strontium and lead were separated from the majority of matrix constituents to obtain pure fractions of Pb and Sr prior to radiometric detection. In case of barium presence, it can also be fully isolated and completely separated from Sr. The automated procedure can be successfully used for preconcentration and separation from high as well as low radioactivity samples. With only a 1 mL column filled with SuperLig®620, it is possible to isolate Sr and Pb with 100% recovery from 1 L to 2 L of sample at a flow rate of up to 10 mL min−1 within several hours. 89, 90Sr isotopes can be further determined by Cherenkov counting, while 210Pb isotopes can be determined by either gamma spectrometry or liquid scintillation counter. The method was tested and validated using certified standard materials and proficiency test samples. The synergy of automated separation and detection procedures enables the determination of the low level activity of 90Sr and 210Pb in a short time with detection limits of 20 mBq L−1 for both isotopes. The proposed method enables lower labour costs, minimal size of apparatuses and columns, low separation time, and reduced secondary waste production. The automated procedure may be easily implemented in laboratories worldwide and can also be used at sampling sites.

Molecular recognition ; Separation ; 210Pb ; 89, 90Sr ; 140Ba

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Podaci o izdanju

225

2021.

121959

11

objavljeno

0039-9140

1873-3573

10.1016/j.talanta.2020.121959

Povezanost rada

Interdisciplinarne prirodne znanosti, Kemija

Poveznice
Indeksiranost