探索在低本底实验中使用银交换沸石吸附氡痕量的可能性

IF 3.5 4区 物理与天体物理 Q1 Physics and Astronomy Progress of Theoretical and Experimental Physics Pub Date : 2023-12-31 DOI:10.1093/ptep/ptad160
Oleksandra Veselska, Olivier Llido, Marie-Cécile Piro, Shefali Vaidya, Steven Kuznicki, José Busto
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引用次数: 0

摘要

在寻找稀有衰变的实验和低能粒子物理学领域,氡是一种重要的放射性本底源。在此,我们首次报告了几家商业生产商生产的银交换沸石对氡的吸附随温度变化的研究。在三种测试的沸石中,Ag-ETS-10 的结果最好。因此,它被选作进一步研究内部放射性和氡散发的材料,这是低放射性实验中所用材料的重要特征。通过比较银交换沸石和未交换沸石,证明了银在氡吸附中的重要作用。此外,与温度相关的测量结果表明,在沸石中引入银后,氡吸附的增强是由于吸附热的增加。这为寻找高效氡吸附剂开辟了新的前景。
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Exploring the potential use of silver-exchanged zeolites for adsorption of radon traces in low background experiments
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, that 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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来源期刊
Progress of Theoretical and Experimental Physics
Progress of Theoretical and Experimental Physics PHYSICS, MULTIDISCIPLINARY-PHYSICS, PARTICLES & FIELDS
CiteScore
12.00
自引率
5.70%
发文量
148
审稿时长
17 weeks
期刊介绍: Progress of Theoretical and Experimental Physics (PTEP) is an international journal that publishes articles on theoretical and experimental physics. PTEP is a fully open access, online-only journal published by the Physical Society of Japan. PTEP is the successor to Progress of Theoretical Physics (PTP), which terminated in December 2012 and merged into PTEP in January 2013. PTP was founded in 1946 by Hideki Yukawa, the first Japanese Nobel Laureate. PTEP, the successor journal to PTP, has a broader scope than that of PTP covering both theoretical and experimental physics. PTEP mainly covers areas including particles and fields, nuclear physics, astrophysics and cosmology, beam physics and instrumentation, and general and mathematical physics.
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