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Tellurium Behavior in the Containment Sump: Dissolution, Redox, and Radiolysis Effects

机译:遏制污水中的碲行为:溶解,氧化还原和放射性效应

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摘要

In the event of a severe nuclear accident, one major concern is the release of radioactive material into the environment causing potential exposure of the general public to radiation. Among the volatile radionuclides are a range of tellurium isotopes. Due to the radioactivity and the volatility of tellurium, it has to be taken into account when assessing the overall effects of an accident. The interest in tellurium is not limited only to its release but also to the fact that some tellurium isotopes decay to iodine, and thus affect the iodine release behavior. The release and transport behavior of tellurium has been investigated over the past decades, however, the aqueous chemistry of tellurium in the complex containment sump system is still unclear. This study presents the behavior of tellurium dioxide in simplified containment sump conditions in relation to dissolution, redox reactions, and interactions with water radiolysis products. The results indicate that radiolysis products have a significant effect on tellurium chemistry in both a reducing and oxidizing manner depending on the solution composition. The redox reactions also affect the solubility of tellurium. The results show that the current information used to assess tellurium source term needs to be reevaluated for both severe accident management and for code validation purposes.
机译:如果发生严重的核事故,一个主要问题是将放射性物质释放到环境中导致公众潜在暴露于辐射。在挥发性放射性核素中是一系列碲同位素。由于放射性和碲的挥发性,在评估事故的整体效果时必须考虑到。对碲的兴趣不仅限于其释放,而且还有一些碲同位素衰减对碘的事实,从而影响碘释放行为。过去几十年来研究了碲的释放和运输行为,然而,碲化化学物质在复杂的容纳贮藏系统中仍然不清楚。本研究呈现了与溶解,氧化还原反应和与水辐射分解产物相互作用的简化遏制污水条件中碲的行为。结果表明,根据溶液组合物,放射性分析产物对降低和氧化方式的碲化学具有显着影响。氧化还原反应也影响碲的溶解度。结果表明,用于评估碲源期限的当前信息需要为严重事故管理和代码验证目的重新评估。

著录项

  • 来源
    《Nuclear Technology》 |2021年第2期|217-227|共11页
  • 作者单位

    Chalmers University of Technology Department of Chemistry and Chemical Engineering Nuclear Chemistry and Industrial Materials Recycling Kemivaegen 4 412 96 Goteborg Sweden;

    Vattenfall AB 401 27 Goteborg Sweden;

    Chalmers University of Technology Department of Chemistry and Chemical Engineering Nuclear Chemistry and Industrial Materials Recycling Kemivaegen 4 412 96 Goteborg Sweden;

    Chalmers University of Technology Department of Chemistry and Chemical Engineering Nuclear Chemistry and Industrial Materials Recycling Kemivaegen 4 412 96 Goteborg Sweden;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Tellurium; fission product; severe accident; containment; sump;

    机译:碲;裂变产品;严重事故;遏制;撒尿;

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