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JAEA Development Programs of Advanced Technologies of Measurement and Detection of Nuclear Material for Safeguards and Security

机译:JAEA核材料的先进技术开发计划,核材料保障和安全

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The Integrated Support Center for Nuclear Nonproliferation and Nuclear Security ("ISCN", hereafter) of Japan Atomic Energy Agency (JAEA) was established in December, 2010 under the sponsorship of Japanese government (MEXT : Ministry of Education, Culture, Sports, Science and Technology). ISCN has development programs of advanced technologies for measurement and detection of nuclear materials for nuclear safeguards and security, in addition to its functions of "assistance for human resources development and capacity buildings", "institutional infrastructure development and technical support" and "international cooperation and collaboration". ISCN started development programs of the following advanced technologies from its beginning. (1) NRF (Nuclear Resonance Fluorescence) NDA technology using laser Compton scattering (LCS) gamma-rays (2) Alternative to ~3He neutron detection technology using inorganic solid scintillator. Program (1) is for development of a NRF NDA system for precise quantitative measurement of ~(239)Pu (and any actinide isotopes in spent fuel and vitrified waste etc.) with a LCS gamma-ray (mono-energetic gamma-ray) source based on a superconducting energy recovery linac (ERL). Program (2) is for development of alternative to ~3He neutron detectors using solid scintillation material. ISCN is also going to conduct a demonstration test of a spent fuel Pu-NDA system that is to be developed by LANL (Los Alamos National Laboratory) using very sophisticated neutron measurement technologies. This demonstration will use Fugen spent fuel assemblies after conclusion of a JAEA/USDOE cooperation agreement relating the demonstration test. This paper presents the development programs of ISCN.
机译:核不扩散和核保障的综合支持中心(“ISCN”,以下,日本原子能机构(JAEA)于2010年12月在日本政府赞助下成立(MEXT:教育部,文化,体育,科学和技术)。 ISCN还有发展和检测核保护和安全核材料的先进技术,除了“人力资源开发和能力建设援助”,“机构基础设施发展和技术支持”和“国际合作和国际合作和”合作”。 ISCN从头开始启动以下高级技术的开发计划。 (1)NRF(核共振荧光)NDA技术采用激光康普顿散射(LCS)γ射线(2)使用无机固体闪烁体的〜3HE中子检测技术。程序(1)用于开发NRF NDA系统,用于精确定量测量〜(239)PU(以及废燃料和玻璃化废物等的任何Aptinide同位素),LCSγ射线(单能量伽玛射线)基于超导能量恢复LINAC(ERL)的源。程序(2)用于使用固体闪烁材料的〜3HE中子探测器的开发。 ISCN还将开展使用非常复杂的中子测量技术的LANL(LOS Alamos National Laboratory)开发的花费燃料PU-NDA系统的演示测试。在结束JAEA / USDOE合作协议后,该示范将使用Fugen Chent Fuel组件在有关示范测试的结束后。本文介绍了ISCN的发展方案。

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