Characterization of spent fuel approved testing material---ATM-105
The characterization data obtained to data are described for Approved Testing Material 105 (ATM-105), which is spent fuel from Bundles CZ346 and CZ348 of the Cooper Nuclear Power Plant, a boiling-water reactor. This report is one in a series being prepared by the Materials Characterization Center at Pacific Northwest Laboratory (PNL) on spent fuel ATMs. The ATMs are receiving extensive examinations to provide a source of well-characterized spent fuel for testing in the US Department of Energy Office of Civilian Radioactive Waste Management (OCRWM) Program. ATM-105 consists of 88 full-length irradiated fuel rods with rod-average burnups of about 2400 GJ/kgM (28 MWd/kgM) and expected fission gas release of about 1%. Characterization data include (1) descriptions of as-fabricated fuel design, irradiation history, and subsequent storage and handling; (2) isotopic gamma scans; (3) fission gas analyses; (4) ceramography of the fuel and metallography of the cladding; (5) special fuel studies involving analytical transmission electron microscopy (AEM); (6) calculated nuclide inventories and radioactivities in the fuel and cladding; and (7) radiochemical analyses of the fuel and cladding. Additional analyses of the fuel are being conducted and will be included in planned revisions of this report.
- Research Organization:
- Pacific Northwest National Lab. (PNNL), Richland, WA (United States)
- Sponsoring Organization:
- USDOE, Washington, DC (United States)
- DOE Contract Number:
- AC06-76RL01830
- OSTI ID:
- 138325
- Report Number(s):
- PNL-5109-105; ON: DE92007036; TRN: 92:006421
- Resource Relation:
- Other Information: PBD: Dec 1991
- Country of Publication:
- United States
- Language:
- English
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21 NUCLEAR POWER REACTORS AND ASSOCIATED PLANTS
40 CHEMISTRY
SPENT FUELS
RADIOCHEMICAL ANALYSIS
ELECTRON MICROSCOPY
AUTORADIOGRAPHY
BURNUP
FISSION PRODUCTS
RADIOACTIVITY
CESIUM
IODINE
GRAIN BOUNDARIES
XENON
KRYPTON
FISSION PRODUCT RELEASE
FUEL RODS
FUEL CANS
METALLOGRAPHY
CERAMOGRAPHY
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