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首页> 外文期刊>Hydrology and Earth System Sciences >Spatially explicit groundwater vulnerability assessment to support the implementation of the Water Framework Directive - a practical approach with stakeholders
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Spatially explicit groundwater vulnerability assessment to support the implementation of the Water Framework Directive - a practical approach with stakeholders

机译:在空间上明确进行地下水脆弱性评估,以支持水框架指令的实施-与利益相关者的实用方法

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摘要

The main objective of the study presented in this paper was to develop an evaluation scheme which is suitable for spatially explicit groundwater vulnerability assessment according to the Water Framework Directive (WFD). Study area was the Hase river catchment, an area of about 3 000 km(2) in north-west Germany which is dominated by livestock farming, in particular pig and poultry production. For the Hase river catchment, the first inventory of the WFD led to the conclusion that 98% of the catchment area is 'unclear/unlikely' to reach a good groundwater status due to diffuse nitrogen emissions from agriculture. The groundwater vulnerability assessment was embedded in the PartizipA project ("Participative modelling, Actor and Ecosystem Analysis in Regions with Intensive Agriculture", www.partizipa.net), within which a so-called actors' platform was established in the study area. The objective of the participatory process was to investigate the effects of the WFD on agriculture as well as to discuss groundwater protection measures which are suitable for an integration in the programme of measures. The study was conducted according to the vulnerability assessment concept of the Intergovernmental Panel on Climate Change, considering sensitivity, exposure and adaptive capacity. Sensitivity was computed using the DRASTIC index of natural groundwater pollution potential. Exposure (for a reference scenario) was computed using the STOFFBILANZ nutrient model. Several regional studies were analysed to evaluate the adaptive capacity. From these studies it was concluded that the adaptive capacity in the Hase river catchment is very low due to the economic importance of the agricultural sector which will be significantly affected by groundwater protection measures. As a consequence, the adaptive capacity was not considered any more in the vulnerability assessment. A groundwater vulnerability evaluation scheme is presented which enjoys the advantage that both exposure and sensitivity can be operationalized in a spatially resolved manner (500x500 m grid) by the two models mentioned above. The evaluation scheme was applied in the Hase river catchment. 21% of the catchment was classified as highly vulnerable, another 73% as medium vulnerable. Only 6% of the Hase river catchment has low vulnerability. Grid cells of the high vulnerability class are considered as priority areas for groundwater protection measures in the programme of measures of the WFD. Measures will be particularly effective in the north-eastern part of the catchment where groundwater vulnerability is mainly due to high nitrogen emissions.
机译:本文提出的研究的主要目的是根据水框架指令(WFD),开发一种适用于空间明确的地下水脆弱性评估的评估方案。研究区域是Hase河集水区,在德国西北部约3000 km(2),主要以畜牧业为主,尤其是猪和家禽的生产。对于长谷河流域,世界粮食日的第一个清单得出的结论是,由于农业中氮的扩散,流域98%的流域面积“不清楚/不太可能”达到良好的地下水状态。地下水脆弱性评估被嵌入PartizipA项目(“集约化农业地区的参与式建模,参与者和生态系统分析”,www.partizipa.net)中,在该区域内建立了一个所谓的参与者平台。参与过程的目的是调查世界粮食日对农业的影响,并讨论适合纳入措施计划的地下水保护措施。该研究是根据政府间气候变化专门委员会的脆弱性评估概念进行的,其中考虑了敏感性,暴露程度和适应能力。使用自然地下水污染潜力的DRASTIC指数计算敏感度。使用STOFFBILANZ营养模型计算暴露量(用于参考情况)。分析了几个区域研究以评估适应能力。从这些研究得出的结论是,由于农业部门的经济重要性,长谷河流域的适应能力很低,而这将受到地下水保护措施的重大影响。结果,在脆弱性评估中​​不再考虑自适应能力。提出了一种地下水脆弱性评估方案,该方案具有以下优点:可以通过上述两种模型以空间分辨的方式(500x500 m网格)对暴露和敏感性进行操作。该评估方案被应用于长谷河流域。流域的21%被归类为高度脆弱,另外73%被归为中等脆弱。长谷河流域只有6%的脆弱性较低。在《世界粮食日》的措施计划中,高脆弱性等级的网格被视为地下水保护措施的优先领域。这些措施将在流域的东北部特别有效,那里的地下水脆弱性主要是由于高氮排放。

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