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The influence of wind farm development on the hydrochemistry and ecology of an upland stream

机译:风电场的发展对山stream水化学和生态学的影响

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摘要

Despite perceptions of pristine condition, upland environments are increasingly subject to a range of anthropogenic pressures including air pollution, climate change, land-use change and evolving land management strategies. Although they have received little attention to date, the large-scale development of upland wind farms also has the potential to disturb vegetation and soils, alter hydrology and water quality and, thus, impact freshwater ecosystems. This paper presents the findings of a 5-year study of the impacts of wind farm construction on the freshwater environment. Data on water quality, invertebrate and fish populations were collected for 2 years before construction and for the following 3 years covering the construction period and the initial period of the farm's operation. In contrast to previous studies, the impacts of the wind farm development were assessed for a suite of potentially affected hydrochemical variables using a before-after-control-impact (BACI) analysis that allowed separation of construction effects from spatial and temporal variability in hydroclimatological conditions, thereby providing an improved, more robust evidence base. Therewas a small but significant negative effect of construction on pH, alkalinity (Alk) and acid neutralising capacity (ANC) in the upper part of the treatment catchment, which was where the wind farm was situated. The effects were more marked under higher flow conditions. It is hypothesised that this reflects changes in hydrological processes with increased near-surface runoff or organic acid mobilisation. There was no indication that either invertebrate community structure or fish densities were impacted by construction and the resulting effects on water quality.
机译:尽管人们认识到原始状况,但高地环境越来越受到一系列人为压力的影响,包括空气污染,气候变化,土地利用变化和不断发展的土地管理策略。尽管迄今为止它们很少受到关注,但陆上风电场的大规模开发还可能破坏植被和土壤,改变水文学和水质,从而影响淡水生态系统。本文介绍了为期5年的风电场建设对淡水环境影响的研究结果。在建设前两年收集水质,无脊椎动物和鱼类种群的数据,在接下来的三年中收集有关建设期和农场运营初期的数据。与以前的研究相比,使用控制前-影响后(BACI)分析评估了风电场发展的影响,以评估一组潜在受影响的水化学变量,该分析允许将建筑影响与水文气候条件下的时空变化分开,从而提供改进的,更可靠的证据基础。在风电场所在的处理集水区的上部,构造对pH值,碱度(Alk)和酸中和能力(ANC)产生了很小但显着的负面影响。在较高的流量条件下效果更明显。假设这反映了近地表径流或有机酸动员增加的水文过程变化。没有迹象表明无脊椎动物群落结构或鱼类密度受到建筑及其对水质影响的影响。

著录项

  • 来源
    《Environmental Monitoring and Assessment》 |2015年第8期|518.1-518.17|共17页
  • 作者单位

    Marine Scotland Freshwater Lab, Pitlochry PH16 5LB, Perth, Scotland;

    Marine Scotland Freshwater Lab, Pitlochry PH16 5LB, Perth, Scotland;

    Marine Scotland Freshwater Lab, Pitlochry PH16 5LB, Perth, Scotland;

    Findhorn Nairn & Lossie Fisheries Trust, Fisheries Off, Logie IV36 2QN, Moray, Scotland;

    Univ Aberdeen, Northern Rivers Inst, Sch Geosci, Aberdeen AB24 3UF, Scotland;

    Marine Scotland Marine Lab, Aberdeen AB11 9DB, Scotland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Onshore; Wind farm; Water quality; Invertebrate; Fish; BACI;

    机译:陆上;风电场;水质;无脊椎动物;鱼;BACI;

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