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Risk valuation of ecological resources at contaminated deactivation and decommissioning facilities: methodology and a case study at the Department of Energy's Hanford site

机译:被污染的停用和退役设施中生态资源的风险评估:方法和在能源部汉福德基地的案例研究

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Many countries are faced with monumental cleanup tasks remaining from World War II and the Cold War and consistent methodologies are essential to assess the risk from pollutants and the risk from cleanup. In the USA, the Department of Energy (DOE), and other federal and state agencies need to be able to rapidly evaluate the risk to ecological resources for remediation projects. While ecological risk assessments for radionuclides and other contaminants can be performed for different species, evaluations of species assemblages, communities, and ecosystems is more difficult. We summarize an evaluation method for ecological resources on individual remediation units that will allow comparison among a large number of units and that can be modified and applied to the DOE complex-wide. We evaluated the deactivation and decommissioning (D & D) facilities at the Hanford site as case studies. Remediation of these sites has the potential to provide harm to, or increase the value of, ecological resources during and after the process. The evaluation method includes three categories: (1) general steps, (2) ecological descriptions, and (3) ecological ratings. The general steps include identifying the categories of resources (level of resource value), identifying the units to be evaluated (e.g., remediation units), identifying a reasonable ecological buffer around the evaluation units, identifying the remediation options (from milestones or other agreements), and developing a rating scale. Ecological descriptions include identifying previous ecological values of specific areas on the evaluation unit, conducting field studies to assess the current conditions, and summarizing the percent of each resource value on the evaluation unit and buffer area. The ecological risk of harm is determined by using the rating scale to evaluate the potential harm to the ecological (and eco-cultural) resources on each evaluation unit currently, during remediation, and in the post-remediation phase. Currently, the risks (potential harm) to ecological resources on the D & D facilities at the Hanford site are non-discernible, but they increase to very high (for reactors) during remediation when there is physical disruption, increased traffic and personnel, and possible increased contamination. Following remediation, the potential harm to ecological resources is low, and the value may be increased due to restoration of native vegetation on sites that were largely industrial prior to remediation. These methods provide managers, regulators, tribes, and the general public with assurance that ecological and eco-cultural resources and the environment are being protected during and following remediation.
机译:许多国家面临第二次世界大战和冷战后剩余的艰巨清理任务,而一致的方法对于评估污染物风险和清理风险至关重要。在美国,能源部(DOE)以及其他联邦和州机构需要能够快速评估修复项目对生态资源的风险。尽管可以对不同物种进行放射性核素和其他污染物的生态风险评估,但对物种集合,群落和生态系统的评估却更加困难。我们总结了单个修复单元上生态资源的评估方法,该方法将允许在大量修复单元之间进行比较,并且可以对其进行修改并将其应用于整个DOE综合体。我们作为案例研究评估了汉福德工厂的停用和退役(D&D)设施。这些地点的整治有可能在该过程中和之后对生态资源造成损害或增加其价值。评价方法包括三类:(1)一般步骤;(2)生态描述;(3)生态等级。一般步骤包括确定资源类别(资源价值水平),确定要评估的单位(例如补救单位),确定评估单位周围合理的生态缓冲区,确定补救方案(根据里程碑或其他协议) ,并制定评分表。生态描述包括识别评估单元上特定区域的先前生态价值,进行实地研究以评估当前状况,以及总结评估单元和缓冲区上每种资源价值的百分比。通过使用等级量表来评估当前,修复期间和修复后阶段中每个评估单元对生态(和生态文化)资源的潜在危害,从而确定生态损害的风险。目前,对汉福德基地D&D设施上的生态资源的风险(潜在危害)是无法识别的,但是在补救过程中,当物理中断,交通和人员增加以及可能增加污染。修复之后,对生态资源的潜在危害很小,并且由于修复之前在很大程度上工业化的站点上恢复了原生植被,其价值可能增加。这些方法可为管理人员,管理人员,部落和一般公众确保在修复过程中及修复后,生态和生态文化资源与环境得到保护。

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