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Development of Reference Station Scoring Criteria for Biomonitoring with Benthic Macroinvertebrates in the Piedmont Region of Georgia

机译:佐治亚皮埃蒙特地区底栖大型椎体近距离地区生物监测率评分标准的发展

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As biocriteria become increasingly accepted by states for evaluating stream designated uses, the use of biomonitoring data for determining stream impairments should be carefully designed, applied, and interpreted based on a solid understanding of the local and regional stream conditions as well as the characteristics of the biological communities and how the communities respond to anthropogenic disturbance. A key to interpreting biomonitoring data involves the development of reference stations as a benchmark to determine degrees of impairment and to evaluate the overall biotic integrity of a stream. The two most important steps for analyzing biological data is the selection of appropriate metrics and selection of appropriate reference streams. Appropriate metrics for biomonitoring are well documented in the literature and have been studied for years (Plafkin et al., 1989; Kerans and Karr, 1994; Barbour et al. 1997), but very little research has been dedicated to the definition of appropriate reference stations and the methods for the selection and use of reference station data even though this is a critical step to the analysis of the results. This paper examines the methods for selecting an appropriate reference station, presents the development of a reference station database, and presents a standard approach for scoring benthic macroinvertebrates in the piedmont of Georgia. A total of 15 reference stations and 53 study station were examined from extensive biomonitoring conducted over the past five years in metro Atlanta. Select reference stations were sampled on multiple occasions. Study stations represent a variety of different landuses and degrees of urbanization, from some of Atlanta’s most urbanized watersheds to suburban watersheds with less development. Study stations represent a gradient of development as determined from examination of watershed landuse and existing point sources. Reference station were chosen in various watersheds in the piedmont region of Georgia and represent least disturbed rural watersheds. Both reference and study stations have been sampled to represent different watershed sizes, seasons, drainage basins. Benthic macroinvertebrates were sampled at each monitoring station following qualitative techniques of the draft standard operating procedures (SOP) for the Georgia Bioassessment Protocols (GBP) (GA DNR, 2000). The GBP is a multi-habitat approach that was modified slightly to maximize efficiency of fieldwork and analysis while providing the data necessary to complete the GBP assessment. This modification is consistent with EPA’s RBPs (Plafkin et al., 1989) and involved making a composite of samples collected from the various habitats for analysis and data evaluation. The composite sample, referred to as a “multi-habitat sample,“ was derived from the habitat types present at a station.
机译:由于对评估流指定用途的各国越来越多地接受,基于对本地和区域流条件的稳定理解以及特征,应仔细设计,应用用于确定流损伤的生物监测数据的使用,以及生物群群以及社区如何应对人为干扰。解释生物监测数据的关键涉及参考站的发展作为确定损伤程度的基准,并评估流的整体生物完整性。用于分析生物数据的两个最重要的步骤是选择适当的指标和选择适当的参考流。生物监测的适当指标在文献中有很好的记录,并已研究多年(Plafkin等,1989; Kerans和Karr,1994; Barbour等,1997),但很少的研究是致力于适当参考的定义站点和选择和使用参考站数据的方法,即使这是对结果分析的关键步骤。本文介绍了选择合适的参考站的方法,提出了参考站数据库的开发,并提出了一种在格鲁吉亚皮埃蒙特中评分底栖大型脊椎动物的标准方法。在Metro Atlanta的过去五年中,在广泛的生物监测中研究了共有15个参考站和53个研究站。选择参考站在多次上采样。研究站代表了各种不同的景观和城市化程度,来自亚特兰大最城市化的流域,郊区流域较少。研究站代表了从流域土地利用和现有点来源的检查确定的发展梯度。参考站被选中在格鲁吉亚皮埃蒙特地区的各种流域中,代表了农村流域最不令人不安的地方。这两个参考和研究站已经抽样以代表不同的流域尺寸,季节,排水盆地。在格鲁吉亚生物分量协议草案(GBP)草案的标准操作程序(SOP)草案的定性技术之后,在每个监测站上对每个监测站进行了采样。 GBP是一种多栖息地方法,略微修改,以最大限度地修改实地性和分析的同时提供完成GBP评估所需的数据。这种修改与EPA的RBPS(Plafkin等,1989)一致,涉及从各种栖息地收集的样品的复合物进行分析和数据评估。将复合样品称为“多栖息样样品”,来自于在站存在的栖息地类型。

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