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The elaboration of environmental sensitivity indices (ESI) maps of the Marine Protected Area of Baia

机译:Baia的海洋保护区的环境敏感性指数(ESI)映射的阐述

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Environmental sensitivity maps for hydrocarbon spills are a useful instrument for highlighting those stretches of coastline and waters that are most vulnerable to oil spills. With this in mind a method for evaluating environmental sensitivity indices has been drawn up. Different natural and anthropic factors that would be affected by a spill have been taken into account in terms of damage to the environment, landscape, cultural and historical heritage and the economy. The structural and physical characteristics that would in any way alter the probability of contact with hydrocarbons or the difficulty of clean up of a particular area have also been considered. The aim of the study was to analyse the submerged archaeological park of Baia in order to draw up a map of the varying degrees of sensitivity to oil spills present in this protected marine area. The study offered the opportunity to validate the tested methods and obtain an overview of the sensitivity to hydrocarbon spills in an area where the situation is particularly complex due to the coexistence of important submerged Roman remains, protected marine species and intense human activity, particularly related to tourism. The data collected during the field trip and the sensitivity indices that were subsequently drawn up are a valuable database for the local community and the public administration for the application of the principles of Integrated Coastal Zone Management, as well as for the prevention of major environmental disasters from all too frequent hydrocarbon spill accidents.
机译:碳氢化合物溢出的环境敏感性图是一种有用的仪器,用于突出那些最容易漏油的海岸线和水域延伸。考虑到这一点,已经制定了一种评估环境敏感指数的方法。在对环境,景观,文化和历史遗产和经济的损害方面,已经考虑到受溢出影响的不同自然和人际关系。以任何方式改变与碳氢化合物接触的可能性和物理特性,或者还考虑了特定区域的清理难度。该研究的目的是分析Baia的淹没考古公园,以吸引对该受保护的海洋区域中存在的油溢出的不同程度的敏感性地图。该研究提供了验证测试方法的机会,并在某个领域获得对碳氢化合物溢出的敏感性概述,因为重要淹没罗马的共存,受保护的海洋物种和强烈的人类活动,特别相关旅游。在现场旅行期间收集的数据以及随后制定的敏感性指数是当地社区的有价值的数据库,以及应用综合沿海地区管理原则的公共管理,以及预防重大环境灾害从所有过于频繁的碳氢化合物溢出事故。

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