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Technetium-99m Transport and Immobilisation in Porous Media: Development of a Novel Nuclear Imaging Technique

机译:多孔介质的Technetium-99M运输和固定:新颖的核成像技术的开发

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Technetium-99, a β-emitting radioactive fission product of ~(235)U, formed in nuclear reactors, presents a major challenge to nuclear waste disposal strategies. Its long half-life (2.1 × 10~5 years) and high solubility under oxic conditions as the pertechnetate anion [Tc(VII)O_4] is particularly problematic for long-term disposal of radioactive waste in geological repositories. In this study, we demonstrate a novel technique for quantifying the transport and immobilisation of technetium-99m, a γ-emitting metastable isomer of technetium-99 commonly used in medical imaging. A standard medical gamma camera was used for non-invasive quantitative imaging of technetium-99m during co-advection through quartz sand and various cementitious materials commonly used in nuclear waste disposal strategies. Spatial moments analysis of the resulting ~(99m)Tc plume provided information about the relative changes in mass distribution of the radionuclide in the various test materials. ~(99m)Tc advected through quartz sand demonstrated typical conservative behaviour, while transport through the cementitious materials produced a significant reduction in radionuclide centre of mass transport velocity over time. Gamma camera imaging has proven an effective tool for helping to understand the factors which control the migration of radionuclides for surface, near-surface and deep geological disposal of nuclear waste.
机译:Technetium-99,核反应堆形成的〜(235)U的β-发射放射性裂变产物,对核废物处理策略提出了重大挑战。它在长期半衰期(2.1×10〜5年)和氧化条件下的高溶解度,因为腹部阴离子[Tc(vii)O_4]特别有问题,在地质储存库中的长期处理放射性废物的长期处置。在该研究中,我们证明了一种用于量化Technetium-99m的传输和固定的新技术,常用于医学成像的γ-99的γ发射亚稳异构体。标准医用伽玛相机用于通过石英砂和核废料处理策略常用的各种水泥材料在共同平流期间对Technetium-99m的非侵入定量成像。所得〜(99M)TC羽流的空间矩分析提供了关于各种测试材料中放射性核素的质量分布的相对变化的信息。 〜(99米)TC通过石英砂建立典型的保守行为,而通过水泥材料的运输在随着时间的推移随着时间的推移产生了放射性核素速率的显着减少。伽玛摄像机成像已证明有效的工具,帮助了解控制放射性核素迁移的因素,核废料的表面,近地和深层地质处置。

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