Magnetic Separation as a Plutonium Residue Enrichment Process

We have subjected several plutonium contaminated residues to Open Gradient Magnetic Separation (OGMS) on an experimental scale. OGMS experiments on graphite and bomb reduction residues resulted in aplutonium rich fraction and a plutonium lean fraction. Values for the bulk quantity rejected to the le...

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Veröffentlicht in:Separation science and technology 1990-01, Vol.25 (13-15), p.1967-1979
Hauptverfasser: Avens, L. R., Gallegos, U. F., McFarlan, J. T.
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Sprache:eng
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Zusammenfassung:We have subjected several plutonium contaminated residues to Open Gradient Magnetic Separation (OGMS) on an experimental scale. OGMS experiments on graphite and bomb reduction residues resulted in aplutonium rich fraction and a plutonium lean fraction. Values for the bulk quantity rejected to the lean fraction varied between about 20% to 85% of the feed bulk. The plutonium content of the lean fraction can be reduced from about 2% in the feed to the 0.1% to 0.5% range dependent on the portion of the feed rejected to this lean fraction. These values are low enough in plutonium to meet economic discard limits and be considered for direct discard. Magnetic separation of pyrochemical salts gave less favorable results. While a fraction very rich in plutonium could be obtained, the lean fraction plutonium content was too high for direct discard. This may still have chemical processing applications. OGMS experiments at low magnetic field strength on incinerator ash did give two fractions but the plutonium content of each fraction was essentially identical. Thus, no chemical processing advantage was identified for magnetic separation of this residue.
ISSN:0149-6395
1520-5754
DOI:10.1080/01496399008050437