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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. This strategy relies on the recycling of major actinides (Uranium and Plutonium, and also Thorium in the breeder fuel cycle) and the transmutation of minor actinides (Neptunium, Americium and Curium) in appropriate reactors. In order to fulfill this objective, selective extracting agents need to be designed and developed by investigating their complexation mechanism.

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  • 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. This strategy relies on the recycling of major actinides (Uranium and Plutonium, and also Thorium in the breeder fuel cycle) and the transmutation of minor actinides (Neptunium, Americium and Curium) in appropriate reactors. In order to fulfill this objective, selective extracting agents need to be designed and developed by investigating their complexation mechanism. (en)
  • Il riprocessamento avanzato del combustibile nucleare esausto è una potenziale strategia per ottenere un ciclo sostenibile del combustibile nucleare e per affrontare il pesante onere della gestione delle scorie nucleari. In particolare, lo sviluppo di sistemi avanzati punta a preservare le risorse naturali, ridurre l'inventario dei rifiuti e migliorare l'accettabilità sociale dell'energia nucleare. Questa strategia si basa sul riciclo degli attinidi maggiori (Uranio e Plutonio) e sulla trasmutazione degli attinidi minori (Nettunio, Americio e Curio). Inoltre, agenti estraenti selettivi dovranno essere sviluppati investigando il loro meccanismo di complessazione (it)
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  • 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. This strategy relies on the recycling of major actinides (Uranium and Plutonium, and also Thorium in the breeder fuel cycle) and the transmutation of minor actinides (Neptunium, Americium and Curium) in appropriate reactors. In order to fulfill this objective, selective extracting agents need to be designed and developed by investigating their complexation mechanism. (en)
  • Il riprocessamento avanzato del combustibile nucleare esausto è una potenziale strategia per ottenere un ciclo sostenibile del combustibile nucleare e per affrontare il pesante onere della gestione delle scorie nucleari. In particolare, lo sviluppo di sistemi avanzati punta a preservare le risorse naturali, ridurre l'inventario dei rifiuti e migliorare l'accettabilità sociale dell'energia nucleare. Questa strategia si basa sul riciclo degli attinidi maggiori (Uranio e Plutonio) e sulla trasmutazione degli attinidi minori (Nettunio, Americio e Curio). Inoltre, agenti estraenti selettivi dovranno essere sviluppati investigando il loro meccanismo di complessazione (it)
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  • Advanced reprocessing of spent nuclear fuel (en)
  • Riprocessamento avanzato del combustibile nucleare esausto (it)
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