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June 20, 2026Fusion Science & Technology0 citationsOpen Access

Tritium Accumulation and Ozone Decontamination of Tungsten and Beryllium

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DBDominic BatzlerRGRobin GrößlePHPhilipp Haag

Key Points

  • This research aims to investigate the accumulation of tritium on tungsten and beryllium surfaces and the effectiveness of ozone in decontaminating these materials.
  • Experimental setup exposing solid samples to gaseous tritium to measure activity over time.
  • Comparison of decontamination effects using dry air versus dry air with ozone during ultraviolet irradiation.
  • Materials tested included tungsten and beryllium, focusing on their responses to tritium exposure.
  • Beryllium accumulated tritium over four times faster than tungsten upon exposure to gaseous tritium.
  • Exposure to ozone without ultraviolet irradiation did not significantly reduce surface activity compared to dry air.
  • The experiments highlight the material-dependent nature of tritium accumulation and the need for specific decontamination methods.

Abstract

Tritium adsorption on surfaces creates a variety of issues ranging from the fields of fusion applications to small- and large-scale laboratory experiments using tritium. The extent to which tritium accumulates on surfaces is generally material dependent and must be determined through experiments. Additionally, this surface contamination necessitates the implementation of appropriate decontamination procedures, preferably in situ. A suitable method could be exposure to ozone during ultraviolet irradiation. However, it is currently not known if both components are necessary for the decontamination. At Tritium Laboratory Karlsruhe, both questions on contamination and decontamination can be addressed using a single experimental setup. With this, it is possible to expose solid samples to gaseous tritium to measure the temporal activity evolution. Furthermore, the system can be filled with dry air and with dry air containing ozone to explore their decontamination effect. Both measurement modes were applied to beryllium and tungsten samples, which were chosen for their relevance in fusion. The beryllium surface was observed to accumulate tritium more than four times faster than tungsten when exposed to gaseous tritium. Concerning the decontamination, without simultaneous ultraviolet irradiation, exposure to ozone did not have any distinct effect on the surface activity compared to simply using dry air.

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Cite This Study

Batzler et al. (2026) studied this question.

synapsesocial.com/papers/6a362e1edb0793dc1a53607chttps://doi.org/10.1080/15361055.2026.2683935
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