Published October 21, 1997 | Version v1
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Effect of nitrite concentration on pit depth in carbon steel exposed to simulated radioactive waste

Description

The growth of pits in carbon steel exposed to dilute (0.055 M nitrate-bearing) alkaline salt solutions that simulate radioactive waste was investigated in coupon immersion tests. Most coupons were tested in the as-received condition, with the remainder having been heat treated to produce an oxide film. Nitrite, which is an established pitting inhibitor in these solutions, was present in concentrations from 0 to 0.031 M to 0.16 M; the last concentration is known to prevent pitting initiation in the test solution at the 50 degrees C test temperature. The depths of the deepest pits on coupons of particular exposure conditions were measure microscopically and were analyzed as simple, type 1 extreme value statistical distributions, to predict the deepest expected pit in a radioactive waste tank subject to the test conditions. While the growth rate of pits could not be established from these tests, the absolute value of the deepest pits predicted is of the order of 100 mils after 448 days of exposure. The data indicate that even nitrite concentrations insufficient to prevent pitting have a beneficial effect on limiting the growth of deepest pits

Availability note (English)

Available from INIS in electronic form and/or on microfiche ; Also available from OSTI as DE98051096; NTIS; US Govt. Printing Office Dep.

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Additional details

Publishing Information

Imprint Pagination
13 p.
Report number
WSRC-MS--97-00758

Conference

Title
Corrosion '98.
Dates
22-27 Mar 1998.
Place
San Diego, CA (United States).

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
29036509
Subject category
S36: MATERIALS SCIENCE;
Resource subtype / Literary indicator
Conference
Descriptors DEI
CARBON; NITRITES; PITTING CORROSION; RADIOACTIVE WASTES; STATISTICS; STEELS; TANKS
Descriptors DEC
ALLOYS; CARBON ADDITIONS; CHEMICAL REACTIONS; CONTAINERS; CORROSION; ELEMENTS; IRON ALLOYS; IRON BASE ALLOYS; MATERIALS; MATHEMATICS; NITROGEN COMPOUNDS; NONMETALS; OXYGEN COMPOUNDS; RADIOACTIVE MATERIALS; TRANSITION ELEMENT ALLOYS; WASTES

Optional Information