Showing 1 - 8 results of 8 for search '"actinide"', query time: 0.07s Refine Results
  1. 1

    Actinide Minimization Using Pressurized Water Reactors by Visosky, M., Kazimi, Mujid S., Hejzlar, Pavel

    Published 2012
    “…Transuranic actinides dominate the long-term radiotoxicity in spent LWR fuel. …”
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    Technical Report
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    Impact of Alternative Nuclear Fuel Cycle Options on Infrastructure and Fuel Requirements, Actinide and Waste Inventories, and Economics by Guérin, Laurent, Kazimi, Mujid S.

    Published 2012
    “…Choosing one of these options has direct implications for the infrastructure requirements, natural uranium consumption, actinide inventories in the system, waste repository needs and costs. …”
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    Technical Report
  4. 4

    A Generalized Optimization Methodology for Isotope Management by Massie, Mark Edward, Forget, Benoit

    Published 2012
    “…This research focuses on developing a new approach to studying the nuclear fuel cycle: instead of employing the trial and error approach currently used in actinide management studies in which reactors are designed and then their performance is evaluated, the methodology developed here first identifies relevant fuel cycle objectives–like minimizing decay heat production in a repository, minimizing Pu-239 content in used fuel, etc.…”
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    Technical Report
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    A System Dynamics Study of the Nuclear Fuel Cycle with Recycling: Options and Outcomes for the US and Brazil by Busquim e Silva, R., Kazimi, Mujid S., Hejzlar, Pavel

    Published 2012
    “…Different recycling technology options are included in the code: (1) Thermal recycling in LWRs using Combined Non-Fertile and UO2 Fuel (CONFU), (2) Recycling of TRU in fertile-free fast cores of Actinide Burner Reactors (ABR); and (3) Fast recycling of TRU with UO[subscript 2] in self-sustaining Gas-cooled Fast Reactors (GFR). …”
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    Technical Report
  7. 7

    Fuel Cycle Options for Optimized Recycling of Nuclear Fuel by Aquien, A., Kazimi, Mujid S., Hejzlar, Pavel

    Published 2012
    “…Three recycling strategies are explored in this study: (1) Recycling in thermal Light Water Reactors (LWR) using CONFU technology (COmbined Non-Fertile and UO[subscript 2] fuel), (2) recycling of TRU in fertile-free fast cores of Actinide Burner Reactors (ABR), and (3) recycling of TRU with UO[subscript 2] in self-sustaining Gas-cooled Fast Reactors (GFR). …”
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    Technical Report
  8. 8

    Optimization of the LWR Nuclear Fuel Cycle for Minimum Waste Production by Shwageraus, Eugene, Hejzlar, Pavel, Kazimi, Mujid S.

    Published 2012
    “…In addition, plutonium and other actinides, after the decay of fission products, could become targets for weapon proliferators. …”
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    Technical Report