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模拟流入地中海的营养物质通量。

Modelling nutrient fluxes into the Mediterranean Sea.

作者信息

Malagó Anna, Bouraoui Fayçal, Grizzetti Bruna, De Roo Ad

机构信息

European Commission, Joint Research Centre (JRC), Ispra, Italy.

出版信息

J Hydrol Reg Stud. 2019 Apr;22:100592. doi: 10.1016/j.ejrh.2019.01.004.

Abstract

STUDY REGION

Mediterranean River Basins.

STUDY FOCUS

Human activities and consequent pollution have put the freshwater and marine ecosystems of the Mediterranean region under pressure, with high risk of eutrophication phenomena. In this study, an extended version of the Geospatial Regression Equation for European Nutrient losses model (GREEN), originally developed for estimating nutrient loads from diffuse and point sources in Europe, was extended to include additional nutrient sources using a grid cell discretization. The spatial resolution is 5 arc minute and the model inputs consist of the latest and best available global data.

NEW HYDROLOGICAL INSIGHTS FOR THE REGION

The results of this study show that during 2003-2007 (baseline), 1.87 Tg/y of total nitrogen (TN), 1.22 Tg/y of nitrates (N-NO), 0.11 Tg/y of total phosphorus (TP) and 0.03 Tg/y of orthophosphate (P-PO) were discharged in the Mediterranean Sea. The source apportionment analysis showed that the main contributor to total nitrogen and nitrate loads is agriculture followed by natural background, while for orthophosphate dominant sources include wastewater and scattered dwellings. Two scenarios were investigated to assess sustainable water and nutrient management options, showing that the reduction of 50% of nitrogen surplus leads to a significant reduction of nitrogen emission in regions characterized by high intensity agriculture, while the upgrading of wastewater treatment plants to tertiary level was more efficient for TP reduction.

摘要

研究区域

地中海流域。

研究重点

人类活动及随之而来的污染给地中海地区的淡水和海洋生态系统带来了压力,存在富营养化现象的高风险。在本研究中,最初为估算欧洲面源和点源养分负荷而开发的欧洲养分流失地理空间回归方程模型(GREEN)的扩展版本,通过网格单元离散化扩展到包括额外的养分来源。空间分辨率为5弧分,模型输入由最新的和可得的最佳全球数据组成。

该区域的新水文见解

本研究结果表明,在2003 - 2007年(基线期),地中海每年排放1.87吨总氮(TN)、1.22吨硝酸盐(N - NO)、0.11吨总磷(TP)和0.03吨正磷酸盐(P - PO)。源分配分析表明,总氮和硝酸盐负荷的主要贡献者是农业,其次是自然背景,而对于正磷酸盐,主要来源包括废水和分散住宅。研究了两种情景以评估可持续的水和养分管理方案,结果表明,在高强度农业地区,将氮盈余减少50%会导致氮排放量显著减少,而将污水处理厂升级到三级处理对减少总磷更有效。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83fb/6472532/2bbc5d1aab79/gr1.jpg

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