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Integrated monitoring of South Portugal water bodies: a methodology towards WFD

机译:南葡萄牙水体综合监测:世界粮食日的方法

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The challenge on implementation of the EU Water Framework Directive (WFD) (2000/60/EC) fosters the development of new monitoring approaches. The directive promotes the use of modelling techniques to assist all phases of the process, from characterization and establishment of reference conditions to identification of pressures and assessment of impact. This work is based on the above principles. A classical monitoring of the water status of the main transitional water bodies of Algarve ( South of Portugal) is combined with advanced in situ water profiling and hydrodynamic, water quality and ecological modelling to build a complete description of the system. The aim is to demonstrate a methodology where traditional monitoring and modelling tools can be joined together to draw a holistic picture. The results show that globally the water bodies present a good trophic status. Eutrophication symptoms are not generalized. Due to physical transport and dispersion, nutrient enrichment is not the only factor limiting growth; residence time is also an important factor. Some confined regions with high residence times are at present endangered by point and diffuse sources of pollution. The microbiologic impact of waste water treatment plants (WWTP) is confined to regions between 500m and 1 km from the discharges.
机译:实施欧盟水框架指令(WFD)(2000/60 / EC)面临的挑战促进了新监测方法的发展。该指令促进了建模技术的使用,以协助该过程的所有阶段,从表征和建立参考条件到识别压力和影响评估。这项工作是基于上述原则。对阿尔加维(葡萄牙南部)主要过渡水体的水质状况进行经典监测,并结合先进的原位水剖析和流体动力学,水质和生态模型,以建立对系统的完整描述。目的是演示一种方法,可以将传统的监视和建模工具结合在一起以绘制整体图。结果表明,全球范围内的水体都具有良好的营养状态。富营养化症状并未泛滥。由于物理运输和分散,养分富集不是限制生长的唯一因素。停留时间也是一个重要因素。目前,一些居住时间较长的密闭地区受到点状和分散污染源的威胁。废水处理厂(WWTP)的微生物影响仅限于距排放口500m至1 km之间的区域。

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