IP Library Granted Patent US 7,323,153
Granted Patent B2
US 7,323,153 · App. 11/097,244 · Granted Jan 29, 2008

Reprocessing method by fluoride volatility process using fractional distillation

Assignee: Japan Nuclear Cycle Development Institute
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Quick Facts
Patent No.
US 7,323,153
App. No.
11/097,244
Granted
Jan 29, 2008
Kind
B2
Abstract

Fluorine or a fluorine compound is subjected to a reaction with a spent oxide fuel to produce fluorides of uranium and plutonium, and recovering the fluorides using a difference in volatility behavior. The method includes steps of: subjecting a mixture of UO 2 and PuO 2 with hydrogen fluoride mixed with hydrogen to HF-fluorinate uranium and plutonium into UF 4 and PuF 3 ; subjecting UF 4 and PuF 3 with a fluorine gas to F 2 -fluorinate uranium and plutonium into UF 6 and PuF 6 ; and fractionating UF 6 and PuF 6 using a difference in phase change of obtained UF 6 and PuF 6 , removing a part of UF 6 , and volatilizing the remaining UF 6 and PuF 6 at the same time. By such a reprocessing method, PuF 4 hard to undergo a reaction is prevented from being formed as an intermediate fluoride, the material of a reactor is hard to be corroded, and a consumption of expensive fluorine gas is reduced.

Claims (7)

1. A reprocessing method by a fluoride volatility process using fractional distillation in which fluorine or a fluorine compound is subjected to a reaction with a spent oxide fuel in two stages to produce fluorides of uranium and plutonium, and recover uranium and plutonium as the fluorides using a difference in volatility behavior, the reprocessing method comprising the steps of:

HF fluorination of the spent oxide fuel containing UO 2 and PuO 2 in the reaction thereof with hydrogen fluoride mixed with hydrogen to produce UF 4 and PuF 3 as a first stage, the HF fluorination step being carried out by supplying a hydrogen fluoride gas in a supply amount of 1.1 to 1.3 times the stoichiometric ratio and containing 10 to 30 vol % of hydrogen to a fluidized bed furnace operated in the temperature range of 350 to 430° C.;

F 2 fluorination of UF 4 and PuF 3 in the reaction thereof with fluorine gas to produce UF 6 and PuF 6 as a second stage; and

separation and volatilization of the resulting UF 6 and PuF 6 by fractionally distillating them due to a difference in phase change therebetween to remove a part of UF 6 as gas, and then volatilizing the remaining UF 6 and PuF 6 at the same time.

2. The reprocessing method by a fluoride volatility process using fractional distillation according to claim 1 , wherein the second stage F 2 fluorination step is carried out by supplying a fluorine gas diluted to 20 to 40 vol % to a fluidized bed furnace operated in the temperature range of 500 to 750° C.

3. The reprocessing method by a fluoride volatility process using fractional distillation according to claim 1 , wherein the separation and volatilization step is carried out by using at least one cold trap, and the removal of the part of UF 6 is carried out by fractional distillation at an operating temperature and pressure controlled so that UF 6 is in a gas region and PuF 6 is in a liquid region in the phase diagrams of UF 6 and PuF 6 .

4. The reprocessing method by a fluoride volatility process using fractional distillation according to claim 2 , wherein the separation and volatilization step is carried out by using at least one cold trap, and the removal of the part of UF 6 is carried out by fractional distillation at an operating temperature and pressure controlled so that UF 6 is in a gas region and PuF 6 is in a liquid region in the phase diagrams of UF 6 and PuF 6 .

Assignments (2)
CHANGE OF NAME Recorded Apr 10, 2012
From: JAPAN NUCLEAR CYCLE DEVELOPMENT INSTITUTE
To: JAPAN ATOMIC ENERGY AGENCY, INDEPENDENT ADMINISTRATIVE CORPORATION
Reel/Frame 028023/0814 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 4, 2005
From: AMAMOTO, IPPEI; SATO, KOJI
To: JAPAN NUCLEAR CYCLE DEVELOPMENT INSTITUTE
Reel/Frame 016448/0635 →
Priority Claims (1)
JP 2004-224444 · Jul 30, 2004 · national
Continuity (1)
Related Publication 20060057042A1 · Mar 16, 2006