Determination of Plutonium in Seawater Using Co-Precipitation and Inductively Coupled Plasma Mass Spectrometry With Ultrasonic Nebulisation

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BRONZE

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Abstract

A flow injection–inductively coupled plasma–mass spectrometric (FI–ICP–MS) procedure, utilising ultrasonic nebulisation with membrane desolvation (USN/MD), has been developed for the determination of plutonium (Pu) in seawater at fg l−1 concentration levels. Seawater samples (1 l), after filtration, were subjected to co-precipitation with NdF3, followed by ion exchange to enrich Pu and to reject seawater matrix ions and co-existing uranium. The seawater concentrate (1.0 ml) was then analysed by FI–ICP–MS. The limit of detection for in seawater based on an enrichment factor of 1000 was 5 fg l−1, and precision at the 0.80 pg l−1 level was 12% RSD. Accuracy was verified via recovery experiments, and by comparing survey data for the Irish Sea with that derived by standard methodology based on co-precipitation and α-spectrometry. Concentrations for dissolved in the Irish Sea were in the range of 0.267–0.941 pg l−1 (0.614–2.164 mBq l−1) and 0.051–0.196 pg l−1 (0.428–1.646 mBq l−1), respectively.

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Keywords

Plutonium, Seawater, Inductively coupled plasma–mass spectrometry (ICP–MS), Flow injection, Ultrasonic nebulisation

Fields of Science

01 natural sciences, 0104 chemical sciences

Citation

Eroğlu, Ahmet E., McLeod, Cameron W., Leonard, Kinson S., & McCubbin, D. (1998). Determination of plutonium in seawater using co-precipitation and inductively coupled plasma mass spectrometry with ultrasonic nebulisation. Spectrochimica Acta Part B: Atomic Spectroscopy, 53(6–8), 1221–1233. doi:10.1016/S0584-8547(98)00179-7

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55

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53

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1221

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1233
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