Advanced Reactor Technology Options for Utilization and Transmutation of Actinides in Spent Nuclear Fuel
Description
Renewed interest in the potential of nuclear energy to contribute to a sustainable worldwide energy mix is strengthening the IAEA's statutory role in fostering the peaceful uses of nuclear energy, in particular the need for effective exchanges of information and collaborative research and technology development among Member States on advanced nuclear power technologies (Articles III-A.1 and III-A.3). The major challenges facing the long term development of nuclear energy as a part of the world's energy mix are improvement of the economic competitiveness, meeting increasingly stringent safety requirements, adhering to the criteria of sustainable development, and public acceptability. The concern linked to the long life of many of the radioisotopes generated from fission has led to increased R and D efforts to develop a technology aimed at reducing the amount of long lived radioactive waste through transmutation in fission reactors or accelerator driven hybrids. In recent years, in various countries and at an international level, more and more studies have been carried out on advanced and innovative waste management strategies (i.e. actinide separation and elimination). Within the framework of the Project on Technology Advances in Fast Reactors and Accelerator Driven Systems (http://www.iaea.org/inisnkm/nkm/aws/fnss/index.html), the IAEA initiated a number of activities on utilization of plutonium and transmutation of long lived radioactive waste, accelerator driven systems, thorium fuel options, innovative nuclear reactors and fuel cycles, non-conventional nuclear energy systems, and fusion/fission hybrids. These activities are implemented under the guidance and with the support of the IAEA Nuclear Energy Department's Technical Working Group on Fast Reactors (TWG-FR). This publication compiles the analyses and findings of the Coordinated Research Project (CRP) on Studies of Advanced Reactor Technology Options for Effective Incineration of Radioactive Waste (2002-2007). The overall objective of the CRP, performed within the framework of the TWG-FR) was to increase the capability of interested Member States in developing and applying advanced technologies in the area of long lived radioactive waste utilization and transmutation. The final goal of the CRP was to deepen the understanding of the dynamics of transmutation systems, to qualify the available methods, specify their range of validity, and formulate requirements for future theoretical developments. Twenty institutions from 15 Member States and three international organizations have actively participated in this CRP. The comparative investigations cover burner reactors and transmuters both containing fertile and fertile-free fuels. The systems are designed either as neutronically critical or sub-critical (hybrid) driven by an external neutron source. The neutron spectra of the reactors extend from low thermal to fusion neutron energy levels. Further, systems with solid fuels and with molten salt fuels are compared. The solid fuel systems investigated also cover the impact of various coolants from sodium to heavy liquid metals and gas
Availability note (English)
Also available on-line: http://www-pub.iaea.org/MTCD/publications/PDF/te_1626_web.pdf; For availability on CD-ROM, please contact IAEA, Sales and Promotion Unit: E-mail: sales.publications@iaea.org; Web site: http://www-pub.iaea.org/MTCD/publications/publications.aspFiles
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Additional details
Identifiers
Publishing Information
- ISBN
- 978-92-0-109309-7
- Imprint Pagination
- 319 p.
- ISSN
- 1011-4289
- Report number
- IAEA-TECDOC--1626
INIS
- Country of Publication
- International Atomic Energy Agency (IAEA)
- Country of Input or Organization
- International Atomic Energy Agency (IAEA)
- INIS RN
- 42105176
- Subject category
- S12: MANAGEMENT OF RADIOACTIVE WASTES, AND NON-RADIOACTIVE WASTES FROM NUCLEAR FACILITIES;
- Descriptors DEI
- ACCELERATORS; COMBUSTION; COORDINATED RESEARCH PROGRAMS; FAST REACTORS; FISSION; LIQUID METALS; MEMBER STATES; MOLTEN SALT FUELS; NEUTRON SOURCES; NEUTRONS; NUCLEAR ENERGY; PLUTONIUM; RADIOACTIVE WASTES; RADIOISOTOPES; REACTOR TECHNOLOGY; SODIUM; SOLID FUELS; SPENT FUELS; SUSTAINABLE DEVELOPMENT; THORIUM; TRANSMUTATION; WASTE MANAGEMENT
- Descriptors DEC
- ACTINIDES; ALKALI METALS; BARYONS; CHEMICAL REACTIONS; ELEMENTARY PARTICLES; ELEMENTS; ENERGY; ENERGY SOURCES; EPITHERMAL REACTORS; FERMIONS; FLUIDS; FUELS; HADRONS; ISOTOPES; LIQUID FUELS; LIQUIDS; MANAGEMENT; MATERIALS; METALS; NUCLEAR FUELS; NUCLEAR REACTIONS; NUCLEONS; OXIDATION; PARTICLE SOURCES; RADIATION SOURCES; RADIOACTIVE MATERIALS; REACTOR MATERIALS; REACTORS; RESEARCH PROGRAMS; RESOURCE DEVELOPMENT; THERMOCHEMICAL PROCESSES; TRANSURANIUM ELEMENTS; WASTES
Optional Information
- Notes
- Refs, figs, tabs