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Trace element contamination severity of coastal waters: A first bioassessment at the scale of the whole Mediterranean Sea

机译:沿海水域的微量元素污染严重程度:整个地中海范围内的首次生物评估

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摘要

Human activities generate large volumes of waste that supply marine coastal environments in pathogens, organic matter, nutrients and toxicants. Among the wide range of toxicants are trace elements. Since the latter are toxic for aquatic organisms from threshold levels and as they are therefore likely to cause multiple damage to the population, the community and the ecosystem levels, their environmental occurrence has to be accurately monitored in order to guarantee appropriate environmental management of coastal zones and to preserve marine coastal ecosystems and the goods and services they provide. In the framework of the STARECAPMED project, the present study aimed to monitor, for the first time, the coastal contamination of the entire Mediterranean by As, Ag, Cd, Cu, Hg, Ni and Pb, using Posidonia oceanica (L.) Delile as bioindicator species. But sustainable coastal management also requires the development of appropriate contamination classification systems intended, among other purposes, for environmental managers and policy makers. The combined utilization of several complementary monitoring tools, i.e. water quality scale, pollution index (TEPI and TESVI) and spatial analysis (PCA, CA, correlation analysis and GIS mapping) successfully led to the development of an operational classification system of this kind. In particular, the mapping of the trace element contamination according to a new proposed 5-level water quality scale using the quantile method precisely outlined the contamination severity along Mediterranean coasts and facilitated interregional comparisons. The reliability of the use of P. oceanica as bioindicator species was further again demonstrated through several global, regional and local detailed case studies. In conclusion, holistic approaches such as developed in the present study should be privileged to accurately monitor the contamination rate of coastal waters and to transfer relevant information on this composite problem to environmental managers and policy makers.
机译:人类活动会产生大量废物,为海洋沿海环境提供病原体,有机物质,营养物质和有毒物质。多种毒物中有微量元素。由于后者对阈值水平的水生生物是有毒的,因此,它们很可能对人口,社区和生态系统水平造成多重损害,因此必须准确监测其环境状况,以确保对沿海地区进行适当的环境管理。并保护海洋沿海生态系统及其提供的商品和服务。在STARECAPMED项目的框架内,本研究旨在首次利用海洋波塞冬(Desidonia oceanica(L.)Delile)监测整个地中海沿岸的As,Ag,Cd,Cu,Hg,Ni和Pb的沿海污染。作为生物指示剂种类。但是,可持续的沿海管理还要求开发适当的污染分类系统,除其他目的外,还应用于环境管理人员和政策制定者。几种互补的监测工具的结合利用,即水质等级,污染指数(TEPI和TESVI)和空间分析(PCA,CA,相关性分析和GIS映射)成功地导致了这种业务分类系统的开发。尤其是,使用分位数方法根据新提出的5级水质等级对痕量元素污染进行制图,可以精确地勾勒出地中海沿岸的污染严重程度,并有助于进行区域间比较。通过一些全球,​​区域和当地的详细案例研究,再次证明了使用海洋假单胞菌作为生物指示物种的可靠性。总之,本研究中开发的整体方法应有特权,可以准确地监测沿海水域的污染率,并将有关这一综合问题的相关信息传递给环境管理者和决策者。

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