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Approaches to the implementation of the Water Framework Directive: Targeting mitigation measures at critical source areas of diffuse phosphorus in Irish catchments

机译:实施《水框架指令》的方法:针对爱尔兰流域中弥漫性磷的关键源区域采取缓解措施

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The Water Framework Directive (WFD) has initiated a shift towards a targeted approach to implementation through its focus on river basin districts as management units and the natural ecological characteristics of waterbodies. Due to its role in eutrophication, phosphorus (P) has received considerable attention, resulting in a significant body of research, which now forms the evidence base for the programme of measures (POMs) adopted in WFD River Basin Management Plans (RBMP). Targeting POMs at critical sources areas (CSAs) of P could significantly improve environmental efficiency and cost effectiveness of proposed mitigation strategies. This paper summarises the progress made towards targeting mitigation measures at CSAs in Irish catchments. A review of current research highlights that knowledge related to P export at field scale is relatively comprehensive however; the availability of site-specific data and tools limits widespread identification of CSA at this scale. Increasing complexity of hydrological processes at larger scales limits accurate identification of CSA at catchment scale. Implementation of a tiered approach, using catchment scale tools in conjunction with field-by-field surveys could decrease uncertainty and provide a more practical and cost effective method of delineating CSA in a range of catchments. Despite scientific and practical uncertainties, development of a tiered CSA-based approach to assist in the development of supplementary measures would provide a means of developing catchment-specific and cost-effective programmes of measures for diffuse P. The paper presents a conceptual framework for such an approach, which would have particular relevance for the development of supplementary measures in High Status Waterbodies (HSW). The cost and resources necessary for implementation are justified based on HSWs' value as undisturbed reference condition ecosystems.
机译:水框架指令(WFD)通过将重点放在作为管理单位的流域地区和水体的自然生态特征上,开始朝着有针对性的实施方式转变。由于磷(P)在富营养化中的作用,引起了相当多的关注,导致了大量研究,现在,磷(P)成为WFD流域管理计划(RBMP)中采用的措施计划(POM)的证据基础。将POM定位于P的关键源区域(CSA)可以显着提高拟议的缓解策略的环境效率和成本效益。本文总结了在针对爱尔兰流域CSA采取缓解措施的目标方面取得的进展。对当前研究的回顾表明,与实地规模的磷出口有关的知识相对全面。特定于站点的数据和工具的可用性限制了这种规模的CSA的广泛识别。大范围水文过程的复杂性不断增加,限制了流域规模CSA的准确识别。结合流域规模工具和逐场调查来实施分层方法可以减少不确定性,并提供一种在一系列流域中划定CSA的更实用,更具成本效益的方法。尽管存在科学和实践上的不确定性,但基于CSA的分层方法来帮助制定补充措施将为制定针对流域P的流域特定且具有成本效益的措施计划提供一种手段。一种方法,与制定高水位水体(HSW)补充措施特别相关。实施所需的成本和资源基于HSW的价值作为不受干扰的参考条件生态系统而合理。

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