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A study of the application of the physical hydronomics methodology to assess environmental costs of European rivers

机译:物理水文学方法学在评估欧洲河流环境成本中的应用研究

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Purpose - The purpose of this paper is to check out the status of collected data in European water-related information tools, with the final aim of analyzing the cost to reach the good environmental status in European rivers, from recorded physical and chemical data, within the second law of thermodynamics. Design/methodology/approach - The study is especially focused in an economical assessment to account for the environmental costs of water bodies according to the Water Framework Directive. The Catchments and Rivers Network System, the most important information tool in Europe nowadays, constitutes the support of this work. This study shows a methodology to estimate the cost to restore water bodies in energy terms with the help of an aggregated indicator, from physical and chemical characteristics of rivers. Moreover, energy results are converted later into an economic value. This work presents diverse case studies, starting from Garonne, Rhone, Rhine, Danube, Ebro and Seine rivers. Findings - Figures show that total environmental costs in rivers with higher flows are more important due to the more quantity of water to be restored. Making a contrast among years with different hydrological behavior, total environmental costs are higher in wet years due to the more availability of water to be supplied that consequently implies higher withdrawals. However, rivers with higher total environmental cost are not necessarily the most polluted ones. Regarding to the availability of data, although European monitoring and reporting is in progress, homogeneity of data and consensus in the management of basins are needed. Originality/value - Authors make an estimation of costs to reach the good status of European rivers. This work proposes the Exergy as an aggregate indicator to assess cost for water restoration in monetary values. This paper gives a reference of environmental cost as an important instrument to establish costs recovery prices, to be used in the management of water resources as a complement of other kind of indicators.
机译:目的-本文的目的是检查欧洲与水有关的信息工具中收集的数据的状态,最终目的是根据所记录的物理和化学数据分析在欧洲河流中达到良好环境状态的成本。热力学第二定律。设计/方法/方法-根据《水框架指令》,该研究尤其侧重于经济评估,以考虑水体的环境成本。流域和河流网络系统是当今欧洲最重要的信息工具,为这项工作提供了支持。这项研究显示了一种方法,该方法可以利用综合指标从河流的物理和化学特性来估算以能量计算的恢复水体的成本。此外,能源结果随后转换为经济价值。这项工作提出了各种案例研究,从加龙河,罗纳河,莱茵河,多瑙河,埃布罗河和塞纳河开始。调查结果-数据表明,由于要回收的水量更多,河流流量较大的环境总成本更为重要。与具有不同水文行为的年份进行对比,在潮湿年份,由于要提供更多的可用水,因此总的环境成本较高,因此意味着较高的取水量。但是,总环境成本较高的河流不一定是污染最严重的河流。关于数据的可获得性,尽管正在进行欧洲的监测和报告,但在流域管理中仍需要数据的同质性​​和共识。原创性/价值-作者估算达到欧洲河流良好状态的成本。这项工作提出以能值作为总指标,以货币价值评估水的修复成本。本文将环境成本作为确定成本回收价格的重要手段,以供参考,作为其他类型指标的补充,可用于水资源管理。

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