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These proceedings present the outcome of the 2015 IAEA international conference on the management of spent fuel from nuclear power reactors;
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all types of spent fuel from nuclear power plants and research reactors. It takes into consideration the longer storage periods that have;
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, power reactors, and nuclear fuel cycle activities including high level waste (HLW) arising from reprocessing and spent nuclear fuel declared as;
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storage of spent nuclear fuel. It covers all types of storage facility and all types of spent fuel from nuclear power plants and research reactors;
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of key issues related to the development of a sound radioactive waste and spent nuclear fuel management system. It is intended to brief countries;
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Reprocessing and Recycling of Spent Nuclear Fuel presents an authoritative overview of spent fuel reprocessing, considering future;
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longstanding logjam over how to manage spent nuclear fuel continues to hamper the expansion of nuclear power. If nuclear power is to be a sustainable;
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This publication focuses on the storage of spent nuclear fuel from power reactors, which is a topic of increasing importance to Member;
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conditions. This updated version of Nuclear Energy Series NF-T-2.1 provides information on all aspects of fuel failures in current nuclear power;
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of spent nuclear fuel. The book is essential reading for anyone concerned with NPP maintenance and safety.;
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decommissioning of nuclear power plants, research reactors, and other nuclear fuel cycle facilities. It addresses all the aspects of decommissioning that;
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of nuclear-related R&D. Chapters in part three highlight the areas of radioactive waste and spent fuel management, reactor decommissioning, and;
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Generation IV designs. Finally, part four reviews spent nuclear fuel and radioactive waste management.With its distinguished editor and;
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fusion-generating four times as much energy from the same mass of fuel as nuclear fission-is regarded by its proponents as a viable, eco-friendly;
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. Topics discussed include the investigation of materials and components obtained from nuclear power plants decommissioning; high-temperature gas;
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accident for nuclear plant security, (2) lessons learned for spent fuel storage, and (3) reevaluation of conclusions from previous Academies;
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is one of the most important principle for ensuring safety in nuclear power plants. Safety of VVER-440 Reactors is focused on the barrier;
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Academies study to assess the safety and security risks of spent nuclear fuel stored in cooling pools and dry casks at commercial nuclear power;
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provided can be used in all nuclear facilities including research reactors, fuel manufacturing facilities, fuel reprocessing and waste management;
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description and evaluation of nuclear fission power generation. It covers the whole nuclear fuel cycle, from the extraction of natural uranium from;
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understanding of nuclear power production. Covering such topics as air pollution, thermal pollution, the ultimate availability of uranium, fuel;
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A major concern about the global expansion of nuclear power is the potential spread of nuclear fuel cycle technology (particularly uranium;
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Super Light Water Reactors and Super Fast Reactors provides an overview of the design and analysis of nuclear power reactors. Readers will;
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Super Light Water Reactors and Super Fast Reactors provides an overview of the design and analysis of nuclear power reactors. Readers will;
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of concentrating on nine topics of relevance to the nuclear power industry. The group of experts in the Working Party. The new structure of the Working;
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fuel cycle. As such, technologies for using thorium for power generation in nuclear reactors are being developed worldwide. Since there is a;
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in a nuclear power plant can be grouped under the classes of reactor assembly, steam generation, power generation, fuel handling, safety;
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