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An analysis of institutional responsibilities for the long-term management of contaminant isolation facilities.

机译:对污染物隔离设施的长期管理的机构责任进行了分析。

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Near-surface contaminant isolation facilities are routinely used for the disposal of hazardous and radioactive waste. The objective of these facilities is to maintain the long-term isolation of the identified contaminants as well as to mitigate their associated hazards. Society's experience with modern isolation techniques is beginning to show that these facilities and associated management techniques do not always perform as expected.; This research investigated the potential failure of contaminant isolation facilities. Failure, in the context of this research refers to a contaminant isolation facility's inability to maintain contaminant isolation. Errors were viewed as potential precursors to future failure as they are an indication that actions did not go according to the plan or that the plan itself was inadequate to achieve the objective.; This research used a multiple case study design to further investigate what barriers and controls are used for long-term contaminant isolation and how these controls are currently performing. Seven case study reports were developed as part of this research. The sites investigated included Anaconda, Burrell, Canonsburg, Love Canal, Maxey Flats, Rocky Mountain Arsenal, and Spring Valley. Each of these cases involved sites where persistent contaminants were isolated on-site in the shallow subsurface. A cross-case failure analysis was then performed. Fault trees were developed and are presented in this research to illustrate potential failure pathways for each of the contaminant isolation facility controls.; Individual controls were found to contain many single point errors. These controls can be described as non-robust in that one event could potentially lead to a control error. System failure was found to require the breach of an engineered barrier. For engineered barrier error to occur a prior institutional control error must occur. Institutional control error alone does not appear to lead to system failure. Institutional control error, however, could be viewed as precursors to potential system failure. The lack of information management, stakeholder awareness and adequate resources were found to be key initiating events potentially leading to system failure. These initiating events could lead to latent institutional control error, which are not fully realized until subsequent events occur.
机译:近地表污染物隔离设施通常用于处理危险和放射性废物。这些设施的目的是保持对已识别污染物的长期隔离,并减轻其相关危害。社会在现代隔离技术方面的经验开始表明,这些设施和相关的管理技术并非总是能达到预期的效果。这项研究调查了污染物隔离设施的潜在故障。在本研究中,失败是指污染物隔离设施无法维持污染物隔离。错误被认为是未来失败的潜在先兆,因为它们表明行动没有按照计划进行,或者计划本身不足以实现目标。这项研究使用了多案例研究设计,以进一步研究长期隔离污染物所使用的障碍和控制措施以及这些控制措施目前的表现。作为该研究的一部分,开发了七个案例研究报告。被调查的地点包括Anaconda,Burrell,Canonsburg,Love Canal,Maxey Flats,Rocky Mountain Arsenal和Spring Valley。这些案例中的每一个都涉及在浅表层现场隔离持久性污染物的站点。然后进行跨案例故障分析。开发了故障树并在本研究中介绍了故障树,以说明每种污染物隔离设施控件的潜在故障途径。发现单个控件包含许多单点错误。在一个事件可能会导致控制错误的情况下,可以将这些控制描述为非鲁棒的。发现系统故障需要突破工程障碍。为使工程隔离错误发生,必须先发生机构控制错误。仅机构控制错误似乎不会导致系统故障。但是,机构控制错误可以看作是潜在系统故障的先兆。发现缺乏信息管理,利益相关者意识和足够的资源是可能导致系统故障的关键启动事件。这些启动事件可能会导致潜在的机构控制错误,直到随后的事件发生时才能完全意识到这一点。

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