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A palaeolimnological investigation into nutrient impact and recovery in an agricultural catchment

机译:农业流域营养物影响和回收的古生物学研究

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摘要

Widespread deterioration in water quality as a result of anthropogenic activity has led to the development and implementation of measures aimed at the protection of water resources in the EU. To date, however, relatively little attention has been paid to the effectiveness of these measures. Evidence from an enrichment-sensitive lake permitted reconstructions of changes in ecological and chemical water quality over the last c. 150-200 years, a period that includes a mid to late 20th century intensification of agriculture that was widely experienced across the European Union and the subsequent implementation of measures aimed at protecting water resources against pollution from farming. The data show the development of a more nutrient-tolerant diatom community from early in the 20th century, while the main trophic changes occurred from the 1950s, with the site becoming eutrophic by the 1960s. Heightened enrichment is thought to be linked to enhanced levels of phosphorus (P) transfers from the surrounding grassland catchment owing to an intensification of agricultural activities locally. Most recently, since the late 1990s and particularly post-2007, evidence suggests a decrease in aquatic enrichment, despite continued increases in agricultural intensification. This decoupling is likely to mark a successful implementation in 2006 of measures aimed at decreasing diffuse nutrient transfers from catchments linked to agri-environmental policies in Europe. The research highlights the importance of enrichment-sensitive water bodies as sentinel sites in the monitoring of both external and internal nutrient loadings as agricultural activities and other pressures change within the context of implementing regulatory responses to earlier declines in water quality.
机译:人为活动导致水质普遍恶化,导致制定和实施旨在保护欧盟水资源的措施。然而,迄今为止,对这些措施的有效性的关注相对较少。来自对浓缩作用敏感的湖泊的证据允许重建过去c期间生态和化学水质的变化。 150-200年,其中包括20世纪中叶到20世纪中叶晚期的集约化农业,整个欧盟都经历了广泛的集约化,并随后实施了旨在保护水资源免受农业污染的措施。数据表明,从20世纪初期开始,人们便有了更多的耐营养硅藻群落,而主要的营养变化发生在1950年代,到1960年代就变成了富营养化地区。人们认为,由于当地农业活动的加强,富集程度的提高与周围草地集水区磷(P)转移水平的提高有关。最近,自1990年代后期以来,尤其是2007年后,有证据表明,尽管农业集约化程度不断提高,但水生富集却在减少。这种脱钩可能标志着2006年成功实施了旨在减少与欧洲农业环境政策有关的流域的分散养分转移的措施。这项研究强调了对农业敏感的水体作为定点站点在监测外部和内部营养物负荷(由于农业活动和其他压力在实施对早期水质下降的管理措施而变化)的情况下的重要性。

著录项

  • 来源
    《Journal of Environmental Management》 |2013年第30期|147-155|共9页
  • 作者单位

    School of Natural Sciences, Trinity College Dublin, Ireland,Coastal and Marine Research Centre,University College Cork,Irish Naval Base, Haulbowline,Cobh,Co.Cork,Ireland;

    School of Natural Sciences, Trinity College Dublin, Ireland,Agricultural Catchments Programme, Teagasc, Wexford, Ireland;

    Agricultural Catchments Programme, Teagasc, Wexford, Ireland,School of Environmental Sciences, University of Ulster, Coleraine, N. Ireland;

    School of Natural Sciences, Trinity College Dublin, Ireland;

    School of Natural Sciences, Trinity College Dublin, Ireland;

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

    Eutrophication; Nitrates Directive; Palaeolimnology; Phosphorus;

    机译:富营养化硝酸盐指令;古生物学磷;

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