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INTEGRATED STRATEGY TO ADDRESS HANFORD'S DEEP VADOSE ZONE REMEDIATION CHALLENGES

机译:综合策略来解决汉福德的深层助长区修复挑战

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A vast majority of Hanford's remaining in-ground contaminants reside in the vadose zone of the Central Plateau, where reprocessing operations occurred. The vadose zone is comprised of about 75 meters of water-unsaturated sediments above groundwater. If left untreated, these contaminants could reach groundwater and could remain a threat for centuries. Much of this contamination resides deep in the vadose zone, below the effective- depth of tradition surface remedy influence. In 2008, the Department of Energy initiated deep vadose zone treatability testing to seek remedies for technetium-99 and uranium contamination. These tests include the application of desiccation for technetium-99 and reactive gas technologies for uranium. To complement these efforts, the Department of Energy has initiated a "defense-in-depth" approach to address the unique challenges for characterization and remediation of the deep vadose zone. This defense-in-depth approach will implement multiple approaches to understand and control contaminant flux from the deep vadose zone to the groundwater. Among these approaches is an increased investment in science and technology solutions to resolve deep vadose zone challenges including characterization, prediction, remediation, and monitoring.
机译:绝大多数汉福德的剩余地面污染物都存在于中央高原的Vadose区,其中发生了再处理操作。该助产区由地下水的约75米的水不饱和沉积物组成。如果留下未经处理的话,这些污染物可以达到地下水,并且可能仍然是几个世纪以来的威胁。这种污染的大部分都存在于散塞区的深处,低于传统表面补救措施的有效深度。 2008年,能源部发起了深层散滤区可处理测试,以寻求Technetium-99和铀污染的补救措施。这些试验包括用于铀-99的干燥和铀的反应气技术的应用。为了补充这些努力,能源部已启动“深入深入”的方法,以解决深层散塞区的表征和修复的独特挑战。这种防御深入的方法将实现多种方法来理解和控制从深层散滤区到地下水的污染助焊剂。在这些方法中,对科学和技术解决方案的投资增加,解决了深层助长区挑战,包括表征,预测,修复和监测。

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