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Development of Diagnostic Tools for Trace Organic Compounds and Multiple Stressors

机译:微量有机化合物和多种应激源诊断工具的开发

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This WERF sponsored research presents a preliminary screening process and ecological diagnostic approaches that could be used to help prioritize and evaluate treated wastewater-influenced sites that may be most at risk from trace organic chemical (TOrC) exposure. This work builds on the TOrC prioritization research completed earlier in this research and demonstrates how current diagnostic approaches used in the U.S. (CADDIS) and Canada (Environmental Effects Monitoring) could be extended to evaluate potential risks due to TOrCs. The screening process uses indicators in four categories: (1) wastewater influent and population served, (2) wastewater treatment characteristics, (3) ecological characteristics of the site, and (4) exposure or effects information from the site if available. The indicators included in the screening process are hypotheses, to be tested further using case studies in this research, and should not be taken as validated measures to be used to infer TOrC issues at a site. The diagnostic approach described in this research could be applied prospectively (could ecological effects due to TOrCs occur at my site?) and retrospectively (I have observed ecological effects at my site; are TOrCs a contributing cause?). However, given our current lack of knowledge concerning modes of action for many TOrCs, as well as the factors that determine whether TOrC effects on individuals are translated to community-level ecological effects, the diagnostic approach in this research focuses on retrospective applications at this time. The screening process has been used with some modification for sites in the Ohio Erie Drift Plain ecoregion and some of these, as well as other sites, will be evaluated using diagnostic approaches in Task 3 (case studies) of this research. A web-based database application (http://werf2.tetratech-ffx.com/) has been developed for this project to help end users eventually search and evaluate TOrC data collected by many organizations in the U.S. and to assist in screening and diagnosing risks due to TOrCs. Comments are welcome on the various search features and metadata available for TOrCs within the current database.
机译:这项由WERF资助的研究提供了一种初步的筛选过程和生态诊断方法,可用于帮助确定优先级和评估可能受到痕量有机化学(TOrC)暴露最大风险的已处理废水影响站点。这项工作以本研究中较早完成的TOrC优先级研究为基础,并演示了如何扩展美国(CADDIS)和加拿大(环境影响监测)中使用的当前诊断方法,以评估由TOrC引起的潜在风险。筛选过程使用四类指标:(1)废水流入量和服务人口;(2)废水处理特征;(3)场地的生态特征;(4)场地的暴露或影响信息(如果有)。筛选过程中包含的指标是假设,需要通过本研究中的案例研究进行进一步测试,并且不应被视为已验证的用于推断现场TOrC问题的措施。这项研究中描述的诊断方法可以前瞻性地使用(是否可以在我的场地上发生因TOrC引起的生态影响?),也可以追溯地应用(我在自己的场地上观察到生态影响; TOrC是否是一个起因?)。但是,鉴于我们目前缺乏有关许多TOrC的作用方式的知识,以及确定TOrC对个人的影响是否转化为社区水平的生态影响的因素,因此本研究中的诊断方法目前集中在回顾性应用中。 。筛选过程已在俄亥俄伊利漂流平原生态区的场所进行了一些修改,其中一些以及其他场所将使用本研究任务3(案例研究)中的诊断方法进行评估。为此项目开发了一个基于Web的数据库应用程序(http://werf2.tetratech-ffx.com/),以帮助最终用户最终搜索和评估由美国许多组织收集的TOrC数据,并协助进行筛选和诊断。 TOC带来的风险。欢迎对当前数据库中可用于TOrC的各种搜索功能和元数据发表评论。

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