Exploring the potential use of silver-exchanged zeolites for adsorption of radon traces in low background experiments

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Abstract

Radon is an important source of radioactive background in experiments searching for rare decays and in the field of low-energy particle physics. Here, we report the first temperature-dependent study of radon adsorption on silver-exchanged zeolites from several commercial producers. Among the three tested zeolites, Ag-ETS-10 showed the best result. Hence, it was chosen for the further study of internal radioactivity and radon emanation, which are important characteristics of materials used in low-activity experiments. The important role of silver in radon adsorption is demonstrated by comparison of the silver-exchanged zeolites with their unexchanged counterparts. Furthermore, the temperature-dependent measurements showed that the enhancement of the radon adsorption upon the introduction of silver in zeolite occurs due to the increase of the heat of adsorption. This opens a new perspective for the search for highly efficient radon adsorbents.

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Veselska, O., Llido, O., Piro, M. C., Vaidya, S., Kuznicki, S., & Busto, J. (2024). Exploring the potential use of silver-exchanged zeolites for adsorption of radon traces in low background experiments. Progress of Theoretical and Experimental Physics, 2024(2). https://doi.org/10.1093/ptep/ptad160

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