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  2. PUREX - Wikipedia

    en.wikipedia.org/wiki/PUREX

    PUREX (plutonium uranium reduction extraction) is a chemical method used to purify fuel for nuclear reactors or nuclear weapons. [7] PUREX is the de facto standard aqueous nuclear reprocessing method for the recovery of uranium and plutonium from used nuclear fuel ( spent nuclear fuel , or irradiated nuclear fuel).

  3. Tributyl phosphate - Wikipedia

    en.wikipedia.org/wiki/Tributyl_phosphate

    It is also used in nuclear reprocessing as part of the PUREX process. A 15–40% (usually about 30%) solution of tributyl phosphate in kerosene or dodecane is used in the liquid–liquid extraction (solvent extraction) of uranium, plutonium, and thorium from spent uranium nuclear fuel rods dissolved in nitric acid. Liquid extraction can also be ...

  4. List of nuclear reprocessing plants - Wikipedia

    en.wikipedia.org/wiki/List_of_Nuclear...

    List of US Reprocessing Plants Name Location Fuel Type Procedure Status Reprocessing capacity (tHM/yr) Construction start date Operation date Closure Purpose Hanford Site: Washington: REDOX, PUREX: Shut down 1944 1988 Military Savannah River Site: South Carolina: LWR PUREX: Shut down 5000 1952 2002 Civil West Valley LWR PUREX: Shut down 300 ...

  5. Advanced reprocessing of spent nuclear fuel - Wikipedia

    en.wikipedia.org/wiki/Advanced_reprocessing_of...

    The advanced reprocessing of spent nuclear fuel is a potential key to achieve a sustainable nuclear fuel cycle and to tackle the heavy burden of nuclear waste management. In particular, the development of such advanced reprocessing systems may save natural resources, reduce waste inventory and enhance the public acceptance of nuclear energy.

  6. Nuclear reprocessing - Wikipedia

    en.wikipedia.org/wiki/Nuclear_reprocessing

    Reprocessing as a whole is not currently (2005) in favor, and places that do reprocess already have PUREX plants constructed. Consequently, there is little demand for new pyrometallurgical systems, although there could be if the Generation IV reactor programs become reality.

  7. Bismuth phosphate process - Wikipedia

    en.wikipedia.org/wiki/Bismuth_phosphate_process

    There were plans to reactivate the B plant but the new PUREX plant that opened in January 1956 was so efficient that the T plant was closed in March 1956 and plans to reactivate the B plant were abandoned. [21] By 1960, the PUREX plant's output had surpassed the combined output of the B and T plants and the REDOX plant. [22]

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  9. Magnox Reprocessing Plant - Wikipedia

    en.wikipedia.org/wiki/Magnox_Reprocessing_Plant

    The Magnox Reprocessing Plant is a former nuclear reprocessing facility at Sellafield in northern England, which operated from 1964 to 2022. The plant used PUREX chemistry (based on tributyl phosphate (TBP)) to extract plutonium and uranium from used nuclear fuel originating primarily from Magnox reactors. [1]

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