Radiation effects in crystalline ceramics for the immobilization of high-level nuclear waste and plutonium

被引:0
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作者
W. J. Weber
R. C. Ewing
C. R. A. Catlow
T. Diaz de la Rubia
L. W. Hobbs
C. Kinoshita
Hj. Matzke
A. T. Motta
M. Nastasi
E. K. H. Salje
E. R. Vance
S. J. Zinkle
机构
[1] Pacific Northwest National Laboratory,Nuclear Engineering and Radiological Sciences
[2] The University of Michigan,Department of Materials Science and Engineering
[3] The Royal Institution,Department of Nuclear Engineering
[4] Lawrence Livermore National Laboratory,European Commission, Joint Research Center
[5] Massachusetts Institute of Technology,Department of Nuclear Engineering
[6] Kyushu University,Department of Earth Sciences
[7] Institute for Transuranium Elements,Materials Division
[8] Pennsylvania State University,undefined
[9] Los Alamos National Laboratory,undefined
[10] University of Cambridge,undefined
[11] ANSTO,undefined
[12] Oak Ridge National Laboratory,undefined
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摘要
This review provides a comprehensive evaluation of the state-of-knowledge of radiation effects in crystalline ceramics that may be used for the immobilization of high-level nuclear waste and plutonium. The current understanding of radiation damage processes, defect generation, microstructure development, theoretical methods, and experimental methods are reviewed. Fundamental scientific and technological issues that offer opportunities for research are identified. The most important issue is the need for an understanding of the radiation-induced structural changes at the atomic, microscopic, and macroscopic levels, and the effect of these changes on the release rates of radionuclides during corrosion.
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页码:1434 / 1484
页数:50
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