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Advanced Reprocessing Developments in Europe Contribution of European projects ACSEPT and ACTINET-13

机译:欧洲欧洲项目贡献的高级再处理发展抵达和Actinet-13

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Nuclear energy has more than ever to demonstrate that it can contribute safely and on a sustainable way to answer the international increase in energy needs. Actually, in addition to an increased safety of the reactors themselves, its acceptance is still closely associated to our capability to reduce the lifetime of the nuclear waste, to manage them safely and to propose options for a better use of the natural resources. Spent fuel reprocessing can help to reach these objectives. But this cannot be achieved only by optimizing industrial processes through engineering studies. It is of a primary importance to increase our fundamental knowledge in actinide sciences in order to build the future of nuclear energy on reliable and scientifically-founded results, and therefore meet the needs of the future fuel cycles in terms of fabrication and performance of fuels, reprocessing and waste management. At the European level, both the collaborative project ACSEPT and the Integrated Infrastructure Initiative ACTINET-13 work together to improve our knowledge in actinides chemistry and therefore develop advanced separation processes. These tools are complementary and work in close connection on some specific issues such as the understanding of the selectivity of extracting organic ligands. By offering transnational access to the main nuclear research facility in Europe, ACTINET-13 aims at increasing the knowledge in actinide sciences by gathering all the expertise available in European nuclear research institutes or university and giving them the opportunity to come and work in hot-labs (ITU, Atalante...) or beamlines (ESFR, ANKA, PSI) ACSEPT is focused on the development of advanced separation processes, both aqueous and pyrochemical. Head-end steps, fuel refabrication, solvent treatment, waste management are also taken into account. In aqueous process development, the SANEX and innovative SANEX flowsheets demonstration were successfully achieved. Chemical systems were selected for GANEX and a hot-test under finalization thanks to an important collaboration between European teams. In pyrometallurgy, studies on actinide back-extraction from aluminium and exhaustive electrolysis allowed the validation of two flowsheets developed from more then 10 years in Europe. In addition, efforts were made to increase collaborations, mutualise and homogenise procedures and share good practices. A training and education program including seminars, workshops, brainstorming meeting but also student exchanges and support to post-doctorate fellowships was a key point for maintaining and increasing a high expertise level in actinide separation sciences in Europe. The second ACSEPT International workshop, organised as a specific session of the next Atalante 2012 International Conference, will conclude the ACSEPT project.
机译:核能比以往任何时候都更多地证明它可以安全地贡献,并以可持续的方式回答国际能源需求的增加。实际上,除了对反应堆本身的安全性增加之外,它的验收仍然与我们减少核废料的寿命的能力密切相关,以安全地管理它们,并提出更好地利用自然资源的选择。花费燃料再加工可以帮助实现这些目标。但这才能通过通过工程研究优化工业流程来实现这一点。提高神奇科学科学的基本知识是一项重要意义,以便在可靠和科学成立的结果上建立核能的未来,因此在燃料的制造和性能方面满足未来燃料循环的需求,重新处理和废物管理。在欧洲一级,合作项目Acsept和综合基础设施倡议Actinet-13共同努力,提高我们在贴散化学化学中的知识,从而制定高级分离过程。这些工具是互补的,在一些具体问题上紧密连接,例如理解提取有机配体的选择性。通过为欧洲主要核研究设施提供跨国进入,Actinet-13旨在通过收集欧洲核研究机构或大学的所有专业知识来提高神职科学的知识,并使他们有机会来到热门实验室(ITU,Atalante ...)或横梁(ESFR,ANKA,PSI)Acsept专注于高级分离过程的开发,含水和发光化学。头端步骤,燃料拒绝,溶剂处理,废物管理也被考虑在内。在水上流程开发中,成功实现了Sanex和创新的Sanex流程表。由于欧洲队与欧洲队之间的重要合作,所选择的化学品系统为GANEX和最终确定的热试验。在Pyromatal冶金中,铝和彻底电解的散瞳反射的研究允许验证从欧洲10年开始的两种流程。此外,努力增加合作,共同化和均质程序并分享良好的做法。培训和教育方案包括研讨会,研讨会,头脑风暴会议,也是学生交流和对博士后奖学金的支持是维持和增加欧洲神奇分离科学的高专业知识水平的关键。第二届ACSEPT国际研讨会,作为下一个Atalante 2012国际会议的特定会议,将缔结ACSEPT项目。

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