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为什么、如何以及在多大程度上减轻沿海地区的微生物污染?系统方法在法国索恩河口湾的应用。

Why, how, and how far should microbiological contamination in a coastal zone be mitigated? An application of the systems approach to the Thau lagoon (France).

机构信息

Ifremer, Marine Economics Unit, UMR Amure, CS 10070, 29280 Plouzané, France.

出版信息

J Environ Manage. 2013 Mar 30;118:55-71. doi: 10.1016/j.jenvman.2012.12.038. Epub 2013 Feb 9.

Abstract

This paper describes the building of an integrated simulation tool based on a systems approach, and its contribution to local political discussion of the mitigation of microbiological contamination of the water in a coastal area. Local management schemes view water quality as a high-priority environmental objective. In practice, how far this objective is achieved depends on trade-offs between the costs of improved water treatment facilities and the acceptable impacts of water contamination. An in-the-field experiment in collaboration with local managers was carried out in the Thau lagoon on the French Mediterranean coast during the SPICOSA (Science and Policy Integration for Coastal System Assessment) project, from 2007 through 2011. It consisted of building a modeling platform and an integrated assessment framework for simulating exploratory scenarios. The modeling platform combines a dynamic contamination model, which represents the sources of microbiological contamination, wastewater treatment facilities, and physical mechanisms of lagoon contamination, with a prospective economic model, which estimates the patterns of development of economic activities in the area through a holistic approach. Exploratory scenarios are used to assess the risk of water contamination and the efficiency of management measures, under various assumptions about the evolution of the system. The contamination simulations suggest that the work currently planned by local authorities will be inadequate for preventing increased water pollution, and that additional but fairly inexpensive management measures for maintaining the current level of water quality should be considered. The integrated assessment framework estimates the ecological and socio-economic impacts of the various pollution mitigation policies in the broader context of possible local development patterns. The results illustrate how the systems approach may aid in the design of an applicable water policy based on operational objectives and feasible technical options.

摘要

本文描述了一个基于系统方法的综合模拟工具的构建,以及它对沿海地区减少微生物水污染的地方政治讨论的贡献。地方管理计划将水质视为一个高优先级的环境目标。在实践中,这一目标的实现程度取决于改进水处理设施的成本与水污染可接受影响之间的权衡。在 2007 年至 2011 年的 SPICOSA(沿海系统评估的科学与政策整合)项目中,与当地管理者合作,在法国地中海沿岸的托湖进行了一项实地实验,该实验包括构建一个模拟探索性情景的建模平台和综合评估框架。该建模平台结合了一个动态污染模型,该模型代表了微生物污染的来源、废水处理设施和泻湖污染的物理机制,以及一个前瞻性经济模型,该模型通过整体方法估计该地区经济活动的发展模式。探索性情景用于评估各种系统演变假设下水污染风险和管理措施的效率。污染模拟表明,地方当局目前计划的工作将不足以防止水污染的加剧,应考虑采取额外但相当廉价的管理措施来维持当前的水质水平。综合评估框架在可能的地方发展模式的更广泛背景下,估计了各种污染缓解政策的生态和社会经济影响。结果表明,系统方法如何有助于设计基于操作目标和可行技术选择的适用水政策。

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