首页> 外文期刊>International Journal of Biodiversity Science, Ecosystem Services & Management >Mapping water quality-related ecosystem services: concepts and applications for nitrogen retention and pesticide risk reduction. (Special Issue: Quantifying and mapping ecosystem services.)
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Mapping water quality-related ecosystem services: concepts and applications for nitrogen retention and pesticide risk reduction. (Special Issue: Quantifying and mapping ecosystem services.)

机译:绘制与水质相关的生态系统服务的图:氮保持和减少农药风险的概念和应用。 (特刊:量化和绘制生态系统服务图。)

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摘要

One of the challenges of using the ecosystem service (ES) framework in the context of planning and decision support is the question of how to map these services in an appropriate way. For water quality-related ESs, this implies a movement from the display of classical water quality indicators towards the mapping of the service itself. We explore the potential of mapping such water quality-related ESs based on three case studies focusing on different aspects of these services: (1) a European case study on pesticides, (2) a multi-scale German case study on nitrogen retention and (3) a more local case study on nitrogen retention in the Elbe floodplain (Lodderitzer Forst). All these studies show a high spatial variation of the results that can be depicted in maps of ES supply. This allows an identification of areas in which nitrogen retention is highest or which areas face the highest ecological risk due to pesticides. The multi-scale case study shows how the level of detail of the results varies with model resolution - a hierarchical approach to environmental and river basin management seems useful, because it allows the planners to determine scale-specific environmental problems and implement specific measures for the different planning levels.
机译:在规划和决策支持的背景下使用生态系统服务(ES)框架的挑战之一是如何以适当的方式绘制这些服务的问题。对于与水质相关的ES,这意味着从经典水质指标的显示向服务本身的映射转变。我们基于针对这些服务不同方面的三个案例研究来探索绘制此类水质相关ES的潜力:(1)欧洲农药案例研究;(2)德国氮素保留多尺度案例研究;( 3)易北河漫滩(Lodderitzer Forst)中氮保留的更本地的案例研究。所有这些研究表明,结果的高度空间变化可以在ES供应量图中描绘。这可以确定氮保留量最高的区域或由于农药而面临最高生态风险的区域。多尺度案例研究显示了结果的详细程度如何随模型分辨率而变化-一种用于环境和流域管理的分层方法似乎很有用,因为它使计划者可以确定特定尺度的环境问题并针对该问题实施特定措施。不同的计划级别。

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