Published 2008 | Version v1
Miscellaneous

Chemical and mechanical decontamination processes to minimize secondary waste decommissioning

Description

In the decommissioning of commercial nuclear reactors in Japan, prior to the dismantling of the nuclear power plants, there are plans to use chemical techniques to decontaminate reactor pressure vessels (RPVs), internal parts, primary loop recirculation systems (PLRs), reactor water clean up systems (RWCUs), etc., so as to minimize radiation sources in the materials to be disposed of. After dismantling the nuclear power plants, chemical and mechanical decontamination techniques will then be used to reduce the amounts of radioactive metallic waste. Toshiba Corporation has developed pre-dismantling and post-dismantling decontamination systems. In order to minimize the amounts of secondary waste, the T-OZON process was chosen for decontamination prior to the dismantling of nuclear power plants. Dismantling a nuclear power plant results in large amounts of metallic waste requiring decontamination; for example, about 20,000 tons of such waste is expected to result from the dismantling of a 110 MWe Boiling Water Reactor (BWR). Various decontamination methods have been used on metallic wastes in preparation for disposal in consideration of the complexity of the shapes of the parts and the type of material. The materials in such nuclear power plants are primarily stainless steel and carbon steel. For stainless steel parts having simple shapes, such as plates and pipes, major sources of radioactivity can be removed from the surface of the parts by bipolar electrolysis (electrolyte: H2SO4). For stainless steel parts having complicated shapes, such as valves and pumps, major sources of radioactivity can be removed from the surfaces by redox chemical decontamination treatments (chemical agent: Ce(IV)). For carbon steel parts having simple shapes, decontamination by blasting with zirconia grit is effective in removing major sources of radioactivity at the surface, whereas for carbon steel parts having complicated shapes, major sources of radioactivity can be removed from the surface by formic acid chemical decontamination treatments. The T-OZON process and the zirconia grit blasting decontamination treatment are described below. (authors)

Part of:
Decommissioning challenges: an industrial reality?

Additional details

Additional titles

Original title (English)
Les defis du demantelement: une realite industrielle?

Publishing Information

Imprint Title
Decommissioning challenges: an industrial reality?
Imprint Pagination
2256 p.
Journal Page Range
p. 411-435
Report number
INIS-FR--09-1169

Conference

Title
an industrial reality?
Original Conference Title
Conference les defis du demantelement: une realite industrielle?
Acronym
Conference decommissioning challenges
Dates
28 Sep - 2 Oct 2008
Place
Avignon (France)

INIS

Country of Publication
France
Country of Input or Organization
France
INIS RN
40102089
Subject category
S22: GENERAL STUDIES OF NUCLEAR REACTORS;
Resource subtype / Literary indicator
Conference, Non-conventional Literature
Descriptors DEI
DECOMMISSIONING; DECONTAMINATION; EXPLOSIVE FRACTURING; JAPAN; OXALIC ACID; PRESSURE VESSELS; SIMULATION
Descriptors DEC
ASIA; CARBOXYLIC ACIDS; CLEANING; CONTAINERS; DEVELOPED COUNTRIES; DICARBOXYLIC ACIDS; FRACTURING; ORGANIC ACIDS; ORGANIC COMPOUNDS

Optional Information

Notes
Imprint:Les defis du demantelement: une realite industrielle?