首页> 外文会议>Sysmposium on environmental toxicology and risk assessment: Recent achievements in environmental fate and transport >Design of a Relative Risk Model Regional-Scale Risk Assessment with Confirmational Sampling for the Willamette and McKenzie Rivers, Oregon
【24h】

Design of a Relative Risk Model Regional-Scale Risk Assessment with Confirmational Sampling for the Willamette and McKenzie Rivers, Oregon

机译:威拉米特河和麦肯齐河的相对风险模型区域规模风险评估的设计与确定性采样,俄勒冈州

获取原文

摘要

The estimation of regional risks due to multiple stressors is a frontier in environmental toxicology and risk assessment. We are conducting a regional scale ecological risk assessment of multiple stressors in the Willamette Valley, Oregon. The Willamette River drains an extenisve agricultural area and forests of both the Coastal and Cascades mountains. The river also receives effluents from paper mills and urban wastewater treatment facilities. A major tributary of the Willamette is the McKenzie River. The McKenzie watershed, which extends into the Cascade Mountains, is extensively forested. Stressors in this watershed include alterations in the landscape due to the harvest of trees, the infrastructure required for the logging, modification of the river or stream banks, and inputs due to contamination by localized urban and non-point sources. We are using the relative risk model (RRM) for ecological risk assessment developed by Wiegers, Landis, and colleagues to combine multiple stressors and receptors in a regional context. The first step in the RRM process is the establishment of assessment endpoints for the particular area and the placement of the endpoints in the landscape. Next, the method involves the development of risk matrices that combine diverse stressors and habitats within the region with numerical ranks. We have broken the McKenzie and Willamette watershed study areas into 13 risk regions and have mapped the locations of the point sources and are incorporating land use data. Using a variety of documents we have established the assessment space and are developing criteria for ranking stressors and habitats. We have also initiated a 3-year field research activity to confirm the risk predictions within the main channel. The sampling sites correspond to the risk regions of the RRM. The sampling program will characterize the population density and structure of the fish assemblage and measuring the health of the individual fish.
机译:在多种毒源的作用下,区域性风险的估计是环境毒理学和风险评估的前沿。我们正在俄勒冈州威拉米特山谷对多种压力源进行区域规模的生态风险评估。威拉米特河流失了广阔的农业区以及沿海和喀斯喀特山脉的森林。这条河还从造纸厂和城市废水处理设施接收废水。威拉米特的主要支流是麦肯齐河。麦肯齐流域延伸到喀斯喀特山脉,森林茂密。该流域的压力源包括:由于树木的采伐,伐木所需的基础设施,河流或溪流的改造,景观的变化,以及由于局部城市和非点源污染造成的投入。我们正在使用由Wiegers,Landis和他的同事开发的相对风险模型(RRM)进行生态风险评估,以结合区域环境中的多个压力源和受体。 RRM过程的第一步是为特定区域建立评估端点,并将端点放置在景观中。接下来,该方法涉及风险矩阵的开发,该矩阵将数值区域内区域内的各种压力源和栖息地相结合。我们已经将麦肯齐和威拉米特分水岭的研究区域划分为13个风险区域,并绘制了点源的位置并整合了土地利用数据。我们使用各种文件建立了评估空间,并正在制定对压力源和栖息地进行排名的标准。我们还启动了一项为期3年的现场研究活动,以确认主要渠道内的风险预测。采样地点与RRM的风险区域相对应。抽样计划将描述鱼类种群的种群密度和结构,并衡量单个鱼类的健康状况。

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