超铀元素
核工程
环境科学
放射性核素
乏核燃料
核燃料
放射性废物
轻水反应堆
裂变产物
核裂变产物
核反应堆
核反应堆堆芯
废物管理
核物理学
工程类
物理
作者
Peter C. Burns,Rodney C. Ewing,Alexandra Navrotsky
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2012-03-08
卷期号:335 (6073): 1184-1188
被引量:468
标识
DOI:10.1126/science.1211285
摘要
Nuclear accidents that lead to melting of a reactor core create heterogeneous materials containing hundreds of radionuclides, many with short half-lives. The long-lived fission products and transuranium elements within damaged fuel remain a concern for millennia. Currently, accurate fundamental models for the prediction of release rates of radionuclides from fuel, especially in contact with water, after an accident remain limited. Relatively little is known about fuel corrosion and radionuclide release under the extreme chemical, radiation, and thermal conditions during and subsequent to a nuclear accident. We review the current understanding of nuclear fuel interactions with the environment, including studies over the relatively narrow range of geochemical, hydrological, and radiation environments relevant to geological repository performance, and discuss priorities for research needed to develop future predictive models.
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