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A novel automated methodology that estimates the United Nations (UN) Sustainable Development Goal (SDG) 14.1.1.: index of coastal eutrophication using the Copernicus Marine Environment Monitoring Service (CMEMS)

机译:一种新的自动化方法,估计联合国(联合国)可持续发展目标(SDG)14.1.1 .:使用哥白尼海洋环境监测服务(CMEMS)的沿海富营养化指数

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The aim of the SDGs is to help human activities be sustainable. The SDG14 "Oceans" targets at the stability and sustainability of marine ecosystems and their resources. Among its ten targets, the 1st refers to the prevention and the significant reduction of marine pollution of all kinds. To quantify the target, the 14.1.1 "Index of Coastal Eutrophication (ICEP) and Floating Plastic Debris Density" is introduced by UNEP. Currently, classified in Tier III, i.e. the methods and data sources for its estimation are not defined, whereas the type of information needed is defined. It is composed from two sub-indicators: coastal eutrophication, and concentration of floating plastic. According to the Oslo-Paris Convention, "eutrophication means the enrichment of water by nutrients causing an accelerated growth of algae and higher forms of plant life...". The impact of this sub-indicator can be characterized as social (waters dangerous for health) and economic (fish/mussels die resulting to production losses), while it has legislation implications (Marine Strategy Framework Directive). Eutrophic areas are usually detected in coastal waters due to nutrient inputs from anthropogenic coastal and land activities. CMEMS uses EO data and in-situ measurements to model these types of information. In this paper we present a novel automatic methodology to calculate the SDG14.1.1.a in the regions of Iberia-Biscay-Ireland Seas. The methodology exploits CMEMS models of Phosphate-Nitrates-Silica-Chlorophyll and Water-Transparency to calculate a weighted indicator that segments waterbodies into four categories: non-problem areas, tendency in eutrophication events, possibility of eutrophication events and problem areas. The indicator was calculated with respect to bathymetry and the Exclusive Economic Zones of the countries that are included in the region, while the temporal provision was weekly and monthly, aggregated from daily CMEMS products. Results indicate the distribution of problematic waters near high population density areas and river estuaries and the shallow waters' tendency in eutrophication events.
机译:SDGS的目的是帮助人类活动可持续。 SDG14“海洋”目标是海洋生态系统的稳定性和可持续性及其资源。在其十个目标中,第一是预防和大幅减少各种海洋污染。为了量化目标,环境署引入了14.1.1“沿海富营养化(ICEP)和浮动塑料碎片密度”的指数。目前,在Tier III中分类,即其估计的方法和数据源未定义,而所需的信息类型是定义的。它由两个子指标组成:沿海富营养化,浮动塑料的浓度。根据奥斯陆 - 巴黎公约,“富营养化意味着营养素的富集水,导致藻类的加速增长和植物生命的更高形式......”。该子指标的影响可作为社会(水域对健康危险)和经济(鱼/贻贝导致生产损失)的影响,而它具有立法影响(海洋战略框架指令)。由于人为沿海和土地活动的营养投入,通常在沿海水域检测到富营养化区域。 CMEMS使用EO数据和原位测量来模拟这些类型的信息。在本文中,我们提出了一种新的自动方法来计算伊比利亚 - 比斯美岛海域地区的SDG14.1.1.a。该方法利用CMEMS模型的磷酸盐 - 硝酸盐 - 二氧化硅 - 叶绿素和水透明度来计算加权指标,该加权指示剂将水上曲线分为四类:非问题区域,富营养化事件的趋势,富营养化事件的可能性和问题区域。该指标是根据该地区纳入的国家和各国各国的专属经济区计算的指标,而时间条款是每周和每月的,从每日CMEMS产品汇总。结果表明,在高人口密度区域和河流河口附近的有问题水域分布以及富营养化事件中的浅水趋势。

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