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An LSC approach for tritium determination in gaseous mixtures optimized with respect to handling, reaction parameters and miniaturization towards microfluidic analysis

Becker, A.; Lippold, H.; Bäcker, J. P.; Belder, D.; Fischer, C.

The handling and analysis of gaseous tritium is of interest for hydrogen isotope separation experiments. In this work, we present an easy-to-handle setup for catalytic oxidation to HTO, recovering all of the initially dosed gaseous tritium as determined by LSC, using CuO as a catalyst at a reaction temperature of 900°C. Aiming to reduce cocktail waste, the LSC determination was downscaled to a microfluidic setup. The performance was evaluated based on the counting efficiency, which was shown to decrease significantly, as the sample volume was reduced to μl amounts, while no changes were observed over a wide range of sample-to-cocktail ratios.

Keywords: tritium; hydrogen isotopes; microfluidics; gas analysis; liquid scintillation counting

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  • Secondary publication expected from 13.02.2025

Permalink: https://www.hzdr.de/publications/Publ-38460