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Determination of Tritium Content in D2 Gas and Heavy Water

Sandeep Puri, Noah D'Amico, Ian Jones, Sonny Alaniz, Andrew Gillespie, Cuikun Lin, R. V. Duncan

nucl-exarXiv:2608.17059

Abstract

A simple experimental method for the determination of tritium concentration in natural hydrogen and deuterium gas down to the femtomole level is described. Palladium and platinum catalysts were used to react hydrogen and oxygen, creating water that could be analyzed in a Revvity Quantulus GCT 6220. This analysis produced sub-femtomole detection limits of tritium present in hydrogen gas or heavy water. A contamination level of 1 femtomole/SL was found in the D2 gas sample that was analyzed. A contamination level of 0.025 femtomole/SL, which is below the noise level of the Quantulus, was found in the standard hydrogen gas sample that was analyzed. The choice of palladium or platinum catalyst did not significantly affect the resulting tritium measurement. By showing that common D2 samples can be contaminated with trace amounts of tritium orders of magnitude above natural abundance, this test demonstrates that a baseline tritium measurement for deuterium samples is highly important for determining the validity of results in nuclear fusion yield experiments.

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