Advanced methods for fabrication of PHWR and LMFBR fuels
- 1. Bhabha Atomic Research Centre, Bombay (India). Radiometallurgy Div.
Description
For self-reliance in nuclear power, the Department of Atomic Energy (DAE), India is pursuing two specific reactor systems, namely the pressurised heavy water reactors (PHWR) and the liquid metal cooled fast breeder reactors (LMFBR). The reference fuel for PHWR is zircaloy-4 clad high density (≤ 96 per cent T.D.) natural UO2 pellet-pins. The advanced PHWR fuels are UO2-PuO2 (≤ 2 per cent), ThO2-PuO2 (≤ 4 per cent) and ThO2-U233O2 (≤ 2 per cent). Similarly, low density (≤ 85 per cent T.D.) (UPu)O2 pellets clad in SS 316 or D9 is the reference fuel for the first generation of prototype and commercial LMFBRs all over the world. However, (UPu)C and (UPu)N are considered as advanced fuels for LMFBRs mainly because of their shorter doubling time. The conventional method of fabrication of both high and low density oxide, carbide and nitride fuel pellets starting from UO2, PuO2 and ThO2 powders is 'powder metallurgy (P/M)'. The P/M route has, however, the disadvantage of generation and handling of fine powder particles of the fuel and the associated problem of 'radiotoxic dust hazard'. The present paper summarises the state-of-the-art of advanced methods of fabrication of oxide, carbide and nitride fuels and highlights the author's experience on sol-gel-microsphere-pelletisation (SGMP) route for preparation of these materials. The SGMP process uses sol gel derived, dust-free and free-flowing microspheres of oxides, carbide or nitride for direct pelletisation and sintering. Fuel pellets of both low and high density, excellent microhomogeneity and controlled 'open' or 'closed' porosity could be fabricated via the SGMP route. (author). 5 tables, 14 figs., 15 refs
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Additional details
Publishing Information
- Imprint Pagination
- 31 p.
- Report number
- BARC--1421
INIS
- Country of Publication
- India
- Country of Input or Organization
- India
- INIS RN
- 20042434
- Subject category
- S21: SPECIFIC NUCLEAR REACTORS AND ASSOCIATED PLANTS; S21: SPECIFIC NUCLEAR REACTORS AND ASSOCIATED PLANTS;
- Descriptors DEI
- ADU; AUC; DENSITY; FABRICATION; FLOWSHEETS; FUEL DENSIFICATION; FUEL PELLETS; FUEL PINS; GADOLINIUM OXIDES; GELATION; IMPREGNATION; LMFBR TYPE REACTORS; MICROSPHERES; MICROSTRUCTURE; MIXED CARBIDE FUELS; MIXED OXIDE FUELS; PHWR TYPE REACTORS; PLUTONIUM CARBIDES; PLUTONIUM DIOXIDE; PLUTONIUM NITRIDES; POROUS MATERIALS; SOL-GEL PROCESS; THORIUM OXIDES; URANIUM CARBIDES; URANIUM DIOXIDE; URANIUM NITRIDES; URANIUM 233
- Descriptors DEC
- ACTINIDE COMPOUNDS; ACTINIDE NUCLEI; ALPHA DECAY RADIOISOTOPES; AMMONIUM CARBONATES; AMMONIUM COMPOUNDS; AMMONIUM URANATES; BREEDER REACTORS; CARBIDES; CARBON COMPOUNDS; CARBONATES; CHALCOGENIDES; CRYSTAL STRUCTURE; DIAGRAMS; ENERGY SOURCES; EPITHERMAL REACTORS; EVEN-ODD NUCLEI; FAST REACTORS; FBR TYPE REACTORS; FUEL ELEMENTS; FUELS; GADOLINIUM COMPOUNDS; HEAVY ION DECAY RADIOISOTOPES; HEAVY NUCLEI; HEAVY WATER COOLED REACTORS; HEAVY WATER MODERATED REACTORS; INFORMATION; ISOTOPES; LIQUID METAL COOLED REACTORS; MATERIALS; NEON 24 DECAY RADIOISOTOPES; NITRIDES; NITROGEN COMPOUNDS; NUCLEAR FUELS; NUCLEI; OXIDES; OXYGEN COMPOUNDS; PHYSICAL PROPERTIES; PLUTONIUM COMPOUNDS; PLUTONIUM OXIDES; RADIOISOTOPES; RARE EARTH COMPOUNDS; REACTOR COMPONENTS; REACTOR MATERIALS; REACTORS; SOLID FUELS; SPONTANEOUS FISSION RADIOISOTO; THORIUM COMPOUNDS; TRANSURANIUM COMPOUNDS; URANATES; URANIUM COMPOUNDS; URANIUM ISOTOPES; URANIUM OXIDES; URANYL COMPOUNDS; YEARS LIVING RADIOISOTOPES