Published 2007 | Version v1
Book

Advanced nuclear fuel cycles activities in IAEA

  • 1. International Atomic Energy Agency, Nuclear Fuel Cycle and Materials Section, Div. of Nuclear Fuel Cycle and Waste Technology, Dept. of Nuclear Energy, Vienna (Austria)

Description

Full text of publication follows. Of late several developments in reprocessing areas along with advances in fuel design and robotics have led to immense interest in partitioning and transmutation (P and T). The R and D efforts in the P and T area are being paid increased attention as potential answers to ever-growing issues threatening sustainability, environmental protection and non-proliferation. Any fuel cycle studies that integrate partitioning and transmutation are also known as ''advanced fuel cycles'' (AFC), that could incinerate plutonium and minor actinide (MA) elements (namely Am, Np, Cm, etc.) which are the main contributors to long-term radiotoxicity. The R and D efforts in developing these innovative fuel cycles as well as reactors are being co-ordinated by international initiatives such as Innovative Nuclear Power Reactors and Fuel Cycles (INPRO), the Generation IV International Forum (GIF) and the Global Nuclear Energy Partnership (GENP). For these advanced nuclear fuel cycle schemes to take shape, the development of liquid-metal-cooled reactor fuel cycles would be the most essential step for implementation of P and T. Some member states are also evaluating other concepts involving the use of thorium fuel cycle or inert-matrix fuel or coated particle fuel. Advanced fuel cycle involving novel partitioning methods such as pyrochemical separation methods to recover the transuranic elements are being developed by some member states which would form a critical stage of P and T. However, methods that can achieve a very high reduction (>99.5%) of MA and long-lived fission products in the waste streams after partitioning must be achieved to realize the goal of an improved protection of the environment. In addition, the development of MA-based fuel is also an essential and crucial step for transmutation of these transuranic elements. The presentation intends to describe progress of the IAEA activities encompassing the following subject-areas: minimization of MA losses in pyrochemical processes, MA fuel and target, coated particle fuel, MA property data bank, and IMF fuel as well as highlights of the recent technical meeting on liquid-metal-cooled reactor fuel cycle. In addition, the necessity for determination of accurate high temperature thermodynamic data of minor actinides for developing the advanced nuclear fuel cycle would be discussed. (authors)

Part of:
Actinide and fission product partitioning and transmutation

Additional details

Publishing Information

Publisher
Organisation for Economic Co-Operation and Development - Nuclear Energy Agency
Imprint Place
Paris (France)
ISBN
92-64-99030-2
Imprint Title
Actinide and fission product partitioning and transmutation
Imprint Pagination
750 p.
Journal Page Range
p. 729

Conference

Title
9. information exchange meeting
Dates
25-29 Sep 2006
Place
Nimes (France)

INIS

Country of Publication
France
Country of Input or Organization
Nuclear Energy Agency of the OECD (NEA)
INIS RN
39088837
Subject category
S12: MANAGEMENT OF RADIOACTIVE WASTES, AND NON-RADIOACTIVE WASTES FROM NUCLEAR FACILITIES;
Resource subtype / Literary indicator
Conference
Descriptors DEI
FUEL CYCLE; IAEA; INFORMATION NEEDS; LIQUID METALS; NUCLEAR FUELS; PYROCHEMICAL REPROCESSING; TARGETS; TRANSMUTATION
Descriptors DEC
ELEMENTS; ENERGY SOURCES; FLUIDS; FUELS; INTERNATIONAL ORGANIZATIONS; LIQUIDS; MATERIALS; METALS; REACTOR MATERIALS; REPROCESSING; SEPARATION PROCESSES

Optional Information