
doi: 10.2172/125170
A brief review has been carried out on the performance of barrier materials for low-level radioactive wastes in seawater environments. The environments include those for shallower coastal waters as well as the deep ocean (down to 3800 m). The review is mainly focused on metallic materials since they are the most common for seawater service and they have the largest data base. Information from the literature is usually pertinent to shallower coastal locations, but there is a valuable source of corrosion data obtained from several studies of metallic specimens exposed to ocean-bed conditions. In addition, the corrosion of carbon steel barriers has been evaluated for actual waste containers that were retrieved from previously-used disposal sites in the Atlantic and Pacific Oceans. Of the metallic materials studied, carbon steel showed the least corrosion resistance. Failure by non-uniform attack in a typical waste container could occur in as little as 25 y in some ocean environments ` Penetration by local attack, such as pitting and crevice corrosion resistance was also observed for more expensive materials such as low-alloy steels, stainless steels, titanium alloys, zirconium alloys, copper alloys, nickel alloys, aluminum alloys, and lead alloys.
Salinity, Temperature Measurement, Ph Value, Low-Level Radioactive Wastes, Containers, 620, Corrosion, Oxygen, 05 Nuclear Fuels, Marine Disposal, Evaluation, Diagrams
Salinity, Temperature Measurement, Ph Value, Low-Level Radioactive Wastes, Containers, 620, Corrosion, Oxygen, 05 Nuclear Fuels, Marine Disposal, Evaluation, Diagrams
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