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Technical Paper

Low-Burnup Irradiation Behavior of Fast Reactor Metal Fuels Containing Minor Actinides

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Pages 96-110 | Published online: 10 Apr 2017

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Tsuyoshi Murakami, Alcide Rodrigues, Masatoshi Iizuka, Laura Aldave de las Heras & Jean-Paul Glatz. (2018) Electrorefining of metallic fuel with burn-up of ~7 at% in a LiCl-KCl melt. Journal of Nuclear Science and Technology 55:11, pages 1291-1298.
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Hirokazu OHTA, Takanari OGATA, Dimitrios PAPAIOANNOU, Masaki KURATA, Tadafumi KOYAMA, Jean-Paul GLATZ & VincenzoV. RONDINELLA. (2011) Development of Fast Reactor Metal Fuels Containing Minor Actinides. Journal of Nuclear Science and Technology 48:4, pages 654-661.
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Douglas L. Porter & Conor B. Hilton. (2011) Extending Sodium Fast Reactor Driver Fuel Use to Higher Temperatures. Nuclear Technology 173:2, pages 218-225.
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Articles from other publishers (18)

Tiankai Yao, Xiang Liu, Yachun Wang, Fei Teng, Daniel J. Murray, Mitchell Meyer, Michael T. Benson & Luca Capriotti. (2022) Transmission Electron Microscopy based Characterization of a U-20Pu-10Zr Fuel Irradiated in Experimental Breeder Reactor-II. Journal of Nuclear Materials 568, pages 153846.
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Jean-Paul Glatz. 2020. Comprehensive Nuclear Materials. Comprehensive Nuclear Materials 305 326 .
P. Souček, K. Uruga, T. Murakami, A. Rodrigues, S. Van Winckel, M. Iizuka & J.-P. Glatz. (2019) Electrorefining of irradiated experimental metallic fuel at high lanthanides concentration in the LiCl–KCl electrolyte. Journal of Nuclear Materials 526, pages 151743.
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Haibing Guo, Wei Zhou, Yong Sun, Dazhi Qian, Jimin Ma, Jun Leng, Heyong Huo & Shaohua Wang. (2017) A Concise Design for the Irradiation of U–10Zr Metallic Fuel at a Very Low Burnup. Nuclear Engineering and Technology 49:4, pages 734-743.
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S. Brémier, K. Inagaki, L. Capriotti, P. Poeml, T. Ogata, H. Ohta & V.V. Rondinella. (2016) Electron probe microanalysis of a METAPHIX UPuZr metallic alloy fuel irradiated to 7.0 at.% burn-up. Journal of Nuclear Materials 480, pages 109-119.
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T. Murakami, A. Rodrigues, M. Ougier, M. Iizuka, T. Tsukada & J.-P. Glatz. (2015) Actinides recovery from irradiated metallic fuel in LiCl–KCl melts. Journal of Nuclear Materials 466, pages 502-508.
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P. Souček, T. Murakami, B. Claux, R. Meier, R. Malmbeck, T. Tsukada & J.-P. Glatz. (2015) Separation of actinides from irradiated An–Zr based fuel by electrorefining on solid aluminium cathodes in molten LiCl–KCl. Journal of Nuclear Materials 459, pages 114-121.
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Dawn E. Janney, James W. Madden & Thomas P. O’Holleran. (2015) High- and low-Am RE inclusion phases in a U–Np–Pu–Am–Zr alloy. Journal of Nuclear Materials 458, pages 106-114.
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Dawn E. Janney, J. Rory Kennedy, James W. Madden & Thomas P. O’Holleran. (2015) Am phases in the matrix of a U–Pu–Zr alloy with Np, Am, and rare-earth elements. Journal of Nuclear Materials 456, pages 46-53.
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Tadafumi Koyama & Masatoshi Iizuka. 2015. Reprocessing and Recycling of Spent Nuclear Fuel. Reprocessing and Recycling of Spent Nuclear Fuel 457 519 .
T. Murakami, T. Kato, A. Rodrigues, M. Ougier, M. Iizuka, T. Koyama & J.-P. Glatz. (2014) Anodic dissolution of irradiated metallic fuels in LiCl–KCl melt. Journal of Nuclear Materials 452:1-3, pages 517-525.
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Kazumi Ikeda, Shin-ichi Koyama, Masaki Kurata, Yasuji Morita, Kazufumi Tsujimoto & Kazuo Minato. (2014) Technology readiness assessment of partitioning and transmutation in Japan and issues toward closed fuel cycle. Progress in Nuclear Energy 74, pages 242-263.
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F. Delage, J. Carmack, C.B. Lee, T. Mizuno, M. Pelletier & J. Somers. (2013) Status of advanced fuel candidates for Sodium Fast Reactor within the Generation IV International Forum. Journal of Nuclear Materials 441:1-3, pages 515-519.
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J.-P. Glatz. 2012. Comprehensive Nuclear Materials. Comprehensive Nuclear Materials 343 366 .
T. Ogata. 2012. Comprehensive Nuclear Materials. Comprehensive Nuclear Materials 1 40 .
R. Malmbeck, C. Nourry, M. Ougier, P. Souček, J.P. Glatz, T. Kato & T. Koyama. (2011) Advanced Fuel Cycle Options. Energy Procedia 7, pages 93-102.
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Rudy J. M. Konings, Thierry Wiss & Christine Guéneau. 2011. The Chemistry of the Actinide and Transactinide Elements. The Chemistry of the Actinide and Transactinide Elements 3665 3811 .
W.J. Carmack, D.L. Porter, Y.I. Chang, S.L. Hayes, M.K. Meyer, D.E. Burkes, C.B. Lee, T. Mizuno, F. Delage & J. Somers. (2009) Metallic fuels for advanced reactors. Journal of Nuclear Materials 392:2, pages 139-150.
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