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The DPSIR Framework and a Pressure-Oriented Water Quality Monitoring Approach to Ecological River Restoration

机译:DPSIR框架和面向压力的水质监测方法在生态河流修复中的应用

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Without monitoring anthropogenic pressures on the water environment, it is difficult to set realistic river restoration targets in relation to water quality. Therefore a more holistic approach is needed to systematically explore the links between socio-economic drivers and observed water quality-related impacts on river ecosystems. Using the DPSIR (Drivers-Pressures-State of the Environment-Impacts-Responses) framework, this study linked ecological river restoration with the socio-economic sector, with the focus on promoting a pressure-oriented water quality monitoring system. Based on the European Water Framework Directive (WFD) and relevant literature, it was found that most water quality-related indicators employed today are state/impacts-oriented, while very few are pressure-oriented. As a response, we call for more attention to a DPR (Drivers-Pressures-Responses) framework in developing an industrial ecology-based pressure-oriented water quality monitoring system for aiding ecological river restoration planning. This approach is characterized in general by accounting for material-related flows throughout the socio-economic sector in relation to river ecosystem degradation. Then the obtained information would help decision makers take appropriate measures to alleviate various significant human-induced wastes and emissions at their sources. We believe that such a pressure-oriented monitoring system will substantially complement traditional state/impacts-oriented environmental and ecological monitoring and help develop more proactive planning and decision-making processes for specific river restoration projects and general water quality management.
机译:如果不监测水环境的人为压力,就很难设定与水质相关的现实的河流恢复目标。因此,需要一种更全面的方法来系统地探索社会经济驱动力与观察到的水质对河流生态系统影响之间的联系。本研究使用DPSIR(驱动程序-压力-环境状态-影响-响应)框架,将生态河流修复与社会经济部门联系起来,重点是促进以压力为导向的水质监测系统。根据欧洲水框架指令(WFD)和相关文献,发现当今使用的大多数与水质相关的指标都是以状态/影响为导向的,而很少是以压力为导向的。作为回应,我们呼吁在开发基于工业生态的基于压力的水质监测系统以帮助生态河流恢复规划时,更多地关注DPR(驱动程序-压力-响应)框架。这种方法的特点通常是考虑到整个社会经济部门与河流生态系统退化有关的物质相关流量。然后,所获得的信息将有助于决策者采取适当措施,以减轻各种重大的人为造成的废物和源头的排放。我们认为,这种以压力为导向的监测系统将大大补充传统的以国家/影响为导向的环境和生态监测,并有助于为特定的河流修复项目和总体水质管理制定更积极的规划和决策程序。

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