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首页> 外文期刊>Canadian Journal of Fisheries and Aquatic Sciences >Establishing baseline biological conditions and monitoring metrics for stream benthic macroinvertebrates and fish in an area of potential shale gas development
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Establishing baseline biological conditions and monitoring metrics for stream benthic macroinvertebrates and fish in an area of potential shale gas development

机译:建立基线生物条件和监测潜在页岩气体开发领域脊髓近距离内脊椎动物和鱼类的监测度量

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摘要

Potential for shale gas production is linked to regional geology, which influences water chemistry of freshwater systems. However, there has been little work to establish baseline ecological conditions of rivers within areas of shale gas development. In this study, water chemistry and monitoring metrics for fish and benthic macroinvertebrates were compared among varying-sized streams in New Brunswick, Canada, with different underlying geology. Water chemistry and biotic community structure differed strongly among geological age classes. Early Carboniferous stations, with highest potential for shale gas production, had the highest ions, invertebrate abundances, and richness of invertebrates and fish, with strongest differences between Early Carboniferous and Older Classes of bedrock. A reference condition model indicated numerous sites deviated from normal, but this was not specific to geological classes and reflected the lack of model reference site coverage. These results highlight the importance of selecting appropriate reference sites for bioassessment in areas of resource development to ensure that response to perturbation is differentiated from natural variability along environmental gradients in geology and resource-dependent variables that potentially influence aquatic ecosystem composition.
机译:页岩气产量的潜力与区域地质有关,影响淡水系统的水化学。然而,在页岩气发展的地区内建立了河流基线生态条件几乎没有工作。在本研究中,在加拿大新布伦瑞克,加拿大的不同尺寸的溪流中,将水化学和底栖大型椎间型的水化学和监测指标进行了比较不同的底层地质。地质年龄课程中的水化学和生物群落结构不同。早期的石油潜力潜力最高,具有最高的离子,无脊椎动物丰富,无脊椎动物和鱼的丰富性,具有最强的石炭系和较老的基岩之间的差异。参考条件模型表示众多站点偏离正常,但这并不特定于地质类,并反映了缺乏模型参考现场覆盖范围。这些结果突出了在资源开发领域中选择生物分量的适当参考点的重要性,以确保对扰动的响应与地质学和资源相关变量中的环境梯度的自然变化不同,可能影响水生生态系统组成。

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