首页> 外文会议>Annual meeting of the Institute of Nuclear Materials Management >INHERENT CHALLENGES IN SAFEGUARDING PYROPROCESSING RD, DEMONSTRATION AND COMMERCIAL FACILITIES
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INHERENT CHALLENGES IN SAFEGUARDING PYROPROCESSING RD, DEMONSTRATION AND COMMERCIAL FACILITIES

机译:保障热加工研发,示范和商业设施的内在挑战

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Development of advanced technologies such as pyroprocessing pose a challenge to the IAEA vis-a-vis safeguarding them in an effective and efficient manner. In the case of pyroprocessing, the Agency has had little-to-no previous safeguards experience with the technology (and therefore did not initially possess sufficient technical expertise), which in turn, presented several technical challenges to developing an effective safeguards approach. This paper aims to provide an understanding of the key safeguards objectives and technical challenges involved in safeguarding pyroprocessing facilities. It includes a basic primer on pyroprocessing, including the transition from item material to bulk form (e.g., material balance) and the relevant proliferation concerns during the various process phases. A description of possible approaches to accountancy, process monitoring (on-line or in-line measurement), and use of containment and surveillance systems are described, together with a discussion on the merits of process modelling for the purpose of accountancy and verification measurements. As part of the Agency's plan to enhance its technical competence, in 2007 a pyroprocessing training course was organized for the first time for Agency inspectors and analysts under a Member State Support Programme (MSSP); this training continues to date. This effort complemented the determination of a reference pyroprocessing facility concept which had been developed based on a study performed under another MSSP during 2009-2011. This reference facility will serve as a baseline pyroprocessing plant from which the Agency will be able to develop a future, generic safeguards approach for pyroprocessing facilities, based on 1) the possible proliferation pathways, 2) the most vulnerable process step(s) from a safeguards perspective, 3) indications of possible material diversions, and 4) indications of misuse of the facility for purposes other than declared.
机译:高温处理等先进技术的发展对原子能机构有效和高效地保护它们构成了挑战。就热解而言,原子能机构以前对该技术几乎没有保障经验(因此最初没有足够的技术专门知识),这反过来给制定有效的保障办法提出了若干技术挑战。本文旨在提供对高温处理设施维护中的关键保障目标和技术挑战的理解。它包括有关热加工的基本基础知识,包括从物料到块状的过渡(例如物料平衡)以及在各个加工阶段中有关扩散的问题。描述了可能的会计方法,过程监控(在线或在线测量)以及遏制和监视系统使用的方法,并讨论了出于会计和验证测量目的而进行的过程建模的优点。作为原子能机构提高其技术能力计划的一部分,2007年,根据成员国支助计划首次为原子能机构的检查人员和分析人员举办了一次热加工培训课程;该培训至今仍在进行。这项工作是对参考高温处理设施概念的确定的补充,该概念是根据另一项MSSP在2009-2011年期间进行的研究得出的。该参考设施将作为基线高温加工厂,原子能机构将能够根据此基础,为高温加工厂开发一种未来的通用保障方法,其依据是:1)可能的扩散途径,2)最脆弱的工艺步骤。保障角度; 3)可能发生物质转移的迹象; 4)出于声明以外的目的滥用设施的迹象。

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