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A framework for increasing sustainability and reducing risk to ecological resources through integration of remediation planning and implementation

机译:通过整合整治规划和实施来提高可持续性和减少生态资源风险的框架

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Remediation of lands contaminated with radionuclides and hazardous chemicals provides an ongoing challenge for many countries. It is particularly problematic for remediation of old industrial sites remaining from World War II and the Cold War. Remediating and restoring large sites is often costly, time-consuming, and involves complex planning and sequencing, as well as consideration of future land use policies. The goal of remediation is to reduce contamination, reduce risk to humans and the environment, and restore land to productive land uses, and ultimately, to sustainability. Often reducing risk to people takes precedence over protecting ecological resources in overall planning, characterization, and execution of remediation strategies. This paper examines when and how stakeholders, including anyone interested and affected by remediation on ecological resources, can become involved in the planning, decision-making, and implementation of remediation. There is a formal process under federal law (e.g. CERCLA) in the US for examining risk to resources, including indicator species. However, there are other informal points during the cleanup process when managers should consider the value of ecological resources, the public may express their concerns for particular ecological resources, and ecologists may provide data and expert advice early in the process as critical decisions are being made about remediation that impact ecological resources. The framework presented in this paper for increasing sustainability of ecological resources has three periods of intervention 1) major decision points, 2) process interdiction points, and 3) remediation action points. Major decision points include site and problem identification, regional ecological resource and local land use practice determination, remediation goals and options determination, and other local issues. Interdiction points include examining remediation options, and in-depth assessments of ecological resources on-site. Remediation action points are aimed at reducing risk to ecological resources during remediation, and include defining the remediation site and buffer, understanding the effects of timing and sequencing of remediation, education of all remediation personnel, and specific suggestions for reducing risk during active remediation. While this framework was developed for Department of Energy remediation sites, it is applicable to brownfields and other contaminated lands world-wide. The overall goal is to provide interested and affected parties with a framework for protecting and enhancing ecological resources during the planning and execution of remediation on contaminated lands.
机译:对被放射性核素和危险化学品污染的土地的补救对许多国家而言是一个持续的挑战。对于修复第二次世界大战和冷战后剩余的旧工业场地而言,这尤其成问题。大型站点的修复和恢复通常是昂贵,费时的,并且涉及复杂的计划和排序,以及对未来土地使用政策的考虑。补救的目标是减少污染,减少对人类和环境的风险,并使土地恢复生产性土地用途,并最终恢复可持续性。通常,在总体规划,特征描述和执行补救策略中,降低人们的风险优先于保护生态资源。本文研究了利益相关者(包括对生态资源修复感兴趣的人和受其影响的任何人)何时以及如何参与补救的计划,决策和实施。根据美国联邦法律(例如CERCLA),有一个正式程序可以检查包括指示物种类在内的资源风险。但是,在清理过程中还有其他非正式要点,管理者应考虑生态资源的价值,公众可以表达对特定生态资源的关注,生态学家可以在制定关键决策的过程中尽早提供数据和专家建议。有关影响生态资源的补救措施。本文提出的提高生态资源可持续性的框架包括三个干预阶段:1)主要决策点; 2)过程拦截点; 3)补救措施点。主要决策点包括地点和问题识别,区域生态资源和当地土地使用实践确定,补救目标和选择方案确定以及其他本地问题。拦截点包括检查补救措施以及对现场生态资源进行深入评估。补救措施要点旨在减少补救过程中对生态资源的风险,包括定义补救地点和缓冲区,了解补救的时间和顺序的影响,对所有补救人员进行教育以及在主动补救期间降低风险的具体建议。尽管此框架是为能源部补救站点开发的,但它适用于全球的棕地和其他受污染土地。总体目标是在规划和执行受污染土地的整治过程中,为感兴趣和受影响的各方提供保护和增强生态资源的框架。

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