Published March 1985 | Version v1
Report Restricted

Regeneration of the iodine isotope-exchange efficiency for nuclear-grade activated carbons

Creators

  • 1. Naval Research Lab., Washington, DC

Description

The removal of radioactive iodine from air flows passing through impregnated activated carbons depends on a minimum of three distinguishable reactions: (1) adsorption on the carbon networks of the activated carbons, (2) iodine isotope exchange with impregnated iodine-127, and (3) chemical combination with impregnated tertiary amines when present. When a carbon is new, all three mechanisms are at peak performance and it is not possible to distinguish among the three reactions by a single measurement; the retention of methyl iodide-127 is usually equal to the retention of methyl iodide-131. After the carbon is placed in service, the three mechanisms of iodine removal are degraded by the contaminants of the air at different rates; the adsorption process degrades faster than the other two. This behavior will be shown by comparisons of methyl iodide-127 and methyl iodide-131 penetration tests. It was found possible to regenerate the iodine isotope-exchange efficiency by reaction with airborne chemical reducing agents with little or no improvement in methyl iodine-127 retention. Examples will be given of the chemical regeneration of carbons after exhaustion with known contaminants as well as for many carbons removed from nuclear power operations. The depth profile of methyl iodide-131 penetration was determined in 2-inch deep layers before and after chemical treatments

Files

Restricted

The record is publicly accessible, but files are restricted to users with access.

Additional details

Publishing Information

Imprint Title
18th DOE nuclear airborne waste management and air cleaning conference: proceedings. Volume 1
Journal Page Range
p. 33-43.
Report number
CONF-840806--Vol.1

Conference

Title
18. DOE nuclear airborne waste management and air cleaning conference.
Dates
13-16 Aug 1984.
Place
Baltimore, MD (USA).