Ion Exchange Behavior of Some Inorganic Ions in System of Ion Exchange Resins of Porous Type
Eiko Akatsu, Yasuyuki Aratono, C. Young BAHK
Abstract
Eiko Akatsu, Yasuyuki Aratono, C. Young BAHK
Abstract
The distribution ratios of certain inorganicions were radiochemically determined in systems of ion exchange resin of porous type vs. 0.1–1.0 M hydrochloric acid or water. The resins used were the cation exchange resins Diaion PK-216 and Amberlite IR-200 (H form), and the anion exchange resins Diaion PA-316 and Amberlite IRA-900 (Cl form). The results concurred with those obtained with ion exchange resins of gel-type (Diaion SKN-1 and SAN-1). The ion exchange behavior of 137Cs was examined by means of an ion exchange resin column. The resin bed consisted of a 2:1 mixture of Diaion PK-216 and PA-316. The decontamination factors were determined at a flow rate of 120 and 180 (hr−1) in space velocity. The values were higher than those obtained with a mixture of ion exchange resin of gel-type (Diaion SKN-1 and SAN-1).
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The distribution ratios of certain inorganicions were radiochemically determined in systems of ion exchange resin of porous type vs. 0.1–1.0 M hydrochloric acid or water. The resins used were the cation exchange resins Diaion PK-216 and Amberlite IR-200 (H form), and the anion exchange resins Diaion PA-316 and Amberlite IRA-900 (Cl form). The results concurred with those obtained with ion exchange resins of gel-type (Diaion SKN-1 and SAN-1). The ion exchange behavior of 137Cs was examined by means of an ion exchange resin column. The resin bed consisted of a 2:1 mixture of Diaion PK-216 and PA-316. The decontamination factors were determined at a flow rate of 120 and 180 (hr−1) in space velocity. The values were higher than those obtained with a mixture of ion exchange resin of gel-type (Diaion SKN-1 and SAN-1).
Key concepts: Amberlite, Ion-exchange resin, Ion exchange, Chemistry, Hydrochloric acid, Ion, Inorganic chemistry, Nuclear chemistry