首页> 外文期刊>Journal of Environmental Science and Health >Mapping of depositional and non-depositional areas in Salinas, California streams with concurrent pyrethroid and benthic macroinvertebrate assessments
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Mapping of depositional and non-depositional areas in Salinas, California streams with concurrent pyrethroid and benthic macroinvertebrate assessments

机译:在同时进行拟除虫菊酯和底栖大型无脊椎动物评估的加利福尼亚萨利纳斯溪流中沉积和非沉积区域的制图

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This study used sediment mapping to determine the spatial extent of depositional and non-depositional areas in the wetted stream bed of four urban streams in Salinas, California. After the stream mapping was completed, 8 pyrethroids were analytically measured from randomly selected sites in 12 depositional and 12 non-depositional areas in the four Salinas streams. Benthic macroinvertebrate samples were collected and identified from depositional and non-depositional areas where pyrethroids were measured. In addition, physical habitat was also evaluated at each site where benthic communities were collected. Based on a random sampling design, 24 % of the 96 sediment sampling sites in the Salinas streams were classified as predominately depositional areas. Mean total pyrethroid concentrations were approximately 2× to 61 × times higher in depositional areas of the Salinas streams when compared to non-depositional areas. Physical habitat scores from the 12 depositional and 12 non-depositional areas in the Salinas stream sites were extremely low compared with other California streams thus demonstrating that impaired physical habitat is a critical stressor in these streams. Approximately 6,300 individual macroinvertebrates were picked and identified from 70 taxa from the 24 Salinas stream sites. The most dominant taxa collected were all considered tolerant of environmental stressors and dominant taxa from both depositional and non-deposition areas were similar. Ten different benthic metrics for the Salinas streams were similar for the depositional areas, where pyrethroid concentrations consistently exceeded laboratory based toxicity thresholds, and non-depositional areas where pyrethroid concentrations were much lower. These results suggest that factors other than pyrethroids are responsible for impacting resident benthic communities in these urban Salinas streams.
机译:这项研究使用沉积物测绘来确定加利福尼亚萨利纳斯市四条城市溪流的湿润河床中沉积和非沉积区域的空间范围。在完成流图绘制之后,从四个盐沼流中12个沉积和12个非沉积区域中随机选择的位置分析测定了8种拟除虫菊酯。收集底栖无脊椎动物样品,并从测量拟除虫菊酯的沉积和非沉积区域中识别出来。此外,还对收集底栖生物的每个地点的自然栖息地进行了评估。基于随机采样设计,盐沼流中96个沉积物采样点中有24%被归类为主要沉积区。与非沉积区相比,萨利纳斯河沉积区的平均总拟除虫菊酯浓度高约2倍至61倍。与其他加利福尼亚河流相比,萨利纳斯河流域的12个沉积和12个非沉积区域的物理栖息地得分极低,因此表明物理栖息地受损是这些河流中的关键压力源。从24个盐沼流域的70个分类单元中挑选并鉴定了大约6300种个体无脊椎动物。收集到的最主要的分类单元都被认为可以耐受环境胁迫,而沉积和非沉积区域的主要分类单元都相似。盐沼流的十种不同底栖指标在沉积区域(拟除虫菊酯的浓度始终超过实验室毒性阈值)和非沉积区域(拟除虫菊酯的浓度要低得多)相似。这些结果表明除拟除虫菊酯以外的其他因素也影响了这些城市萨利纳斯河流域的居民底栖生物群落。

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