Evaluation of silicon carbide (SiC) for deep borehole disposal canister
Creators
- 1. Korea Atomic Energy Research Institute, Daejeon (Korea, Republic of)
Description
To overcome the low mechanical strength and corrosion behavior of a carbon steel canister at high temperature condition of a deep borehole, SiC ceramics were studied as an alternative material for the disposal canister. In this paper, a design concept for a SiC canister, along with an outer stainless steel container, was proposed, and its manufacturing feasibility was tested by fabricating several 1/3 scale canisters. The proposed canister can contain one PWR assembly. The outer container was also prepared for the string formation of SiC canisters. Thermal conductivity was measured for the SiC canister. The canister had a good thermal conductivity of above 70 W·m-1·K-1 at 100 Degree Celsius. The structural stability was checked under KURT environment, and it was found that the SiC ceramics did not exhibit any change for the 3 year corrosion test at 70℃. Therefore, it was concluded that SiC ceramics could be a good alternative to carbon steel in application to deep borehole disposal canisters
Additional details
Publishing Information
- Journal Title
- Journal of Nuclear Fuel Cycle and Waste Technology
- Journal Volume
- 16
- Journal Issue
- 2
- Series
- 21 refs, 5 figs, 2 tabs
- Journal Page Range
- p. 223-242
- ISSN
- 1738-1894
INIS
- Country of Publication
- Korea, Republic of
- Country of Input or Organization
- Korea, Republic of
- INIS RN
- 49096178
- Subject category
- S12: MANAGEMENT OF RADIOACTIVE WASTES, AND NON-RADIOACTIVE WASTES FROM NUCLEAR FACILITIES;
- Descriptors DEI
- BOREHOLES; CARBON STEELS; CERAMICS; CONTAINERS; CORROSION; DESIGN; FEASIBILITY STUDIES; MANUFACTURING; RADIOACTIVE WASTE DISPOSAL; SILICON CARBIDES; THERMAL CONDUCTIVITY
- Descriptors DEC
- ALLOYS; CARBIDES; CARBON ADDITIONS; CARBON COMPOUNDS; CAVITIES; CHEMICAL REACTIONS; IRON ALLOYS; IRON BASE ALLOYS; MANAGEMENT; PHYSICAL PROPERTIES; RADIOACTIVE WASTE MANAGEMENT; SILICON COMPOUNDS; STEELS; THERMODYNAMIC PROPERTIES; TRANSITION ELEMENT ALLOYS; WASTE DISPOSAL; WASTE MANAGEMENT