首页> 外文期刊>Marine Technology Society journal >Optimization and Field Demonstration of a Passive Sampling Technology for Monitoring Conventional Munition Constituents in Aquatic Environments
【24h】

Optimization and Field Demonstration of a Passive Sampling Technology for Monitoring Conventional Munition Constituents in Aquatic Environments

机译:用于水生环境中常规弹药成分监测的无源采样技术的优化和现场演示

获取原文
获取原文并翻译 | 示例
           

摘要

As a result of military training and weapon testing activities, unexploded ordnance (UXO; including munitions such as bombs, projectiles, and mines that did not function as intended) are present in underwater environments. Munitions are also present at underwater sites as discarded military munitions (DMM). In addition to explosive safety considerations, regulators are increasingly concerned about potential ecological impacts on the aquatic environment following corrosion and breaching shells that may cause the slow release of the explosive material by dissolution to the surrounding sediments and water column. Challenges such as the high level of effort required to identify leaking munitions and potential for slow and intermittent release resulting in ultralow concentrations (i.e., part per trillion) may hinder the assessment of environmental exposures using traditional water sampling and analysis techniques. Recently, integrative passive samplers, specifically polar organic chemical integrative samplers (POCIS), have been demonstrated by our team to be valuable tools for the environmental exposure assessment of munition constituents (MC) in aquatic environments. POCIS can be deployed for weeks to months and continuously sample the water, providing the opportunity to capture episodic events or fluctuations in contaminant release, even at low concentrations. The resulting time-weighted average (TWA) water concentration can then be compared with screening values in the context of ecological risk potential and relevance for remedial action. Our preliminary results from POCIS employed under field conditions indicate that it is a robust approach to understanding and validating the release and transport behaviors of MC and subsequent exposure characterization in the vicinity of potentially breached UXO or DMM in ocean environments.
机译:军事训练和武器测试活动的结果是,水下环境中存在未爆炸弹药(UXO;包括炸弹,弹丸和不符合预期功能的地雷等弹药)。弹药也作为废弃的军事弹药(DMM)出现在水下场所。除了安全性方面的考虑外,监管机构也越来越关注腐蚀和破坏外壳后对水生环境的潜在生态影响,这些影响可能会通过溶解到周围的沉积物和水柱中而导致爆炸物缓慢释放。诸如查明泄漏弹药所需的大量工作以及缓慢和间歇释放导致超低浓度(即,万亿分之一)的潜力等挑战可能会妨碍使用传统的水采样和分析技术评估环境暴露。最近,我们的团队证明了集成式无源采样器,特别是极性有机化学集成式采样器(POCIS)是用于评估水生环境中弹药成分(MC)的环境暴露的有价值的工具。 POCIS可以部署数周到数月,并可以对水进行连续采样,从而提供了捕获偶发事件或污染物释放波动的机会,即使浓度很低也是如此。然后,可以将得出的时间加权平均(TWA)水浓度与生态风险潜力和补救措施的相关性下的筛选值进行比较。我们在野外条件下使用POCIS的初步结果表明,这是一种了解和验证MC的释放和运输行为以及随后在海洋环境中可能被破坏的UXO或DMM附近的暴露特征的可靠方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号