首页> 外文期刊>The International Journal of Life Cycle Assessment >Combining ecosystem indicators and life cycle assessment for environmental assessment of demersal trawling in Tunisia
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Combining ecosystem indicators and life cycle assessment for environmental assessment of demersal trawling in Tunisia

机译:结合生态系统指标和生命周期评估对突尼斯深海拖网捕捞进行环境评估

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Purpose The present study assesses environmental performance of seafood production by demersal trawling in Tunisia (Gulf of Gabes) in order to analyze the contribution of each production stage to environmental impacts and to understand drivers of the impacts using life cycle assessment (LCA). Then a set of ecosystem quality indicators were determined using an ecosystem modeling tool, Ecopath with Ecosim (EwE), and were combined with LCA to increase the relevance of both tools' assessments when applied to fisheries. Methods The approach consisted of conducting LCA and calculating ecosystem indicators to provide a complete assessment of trawling's environmental impacts and the ecosystem characteristics associated with seafood production. The functional unit for the LCA was set to 1 t of landed seafood, and system boundaries included several operational stages related to demersal trawling. Several ecosystem indicators from EwE were calculated. Demersal trawling in the exploited ecosystem of the Gulf of Gabes (southern Tunisia) was used as a case study to illustrate the applicability of the approach. Several management plans were simulated and their influence on environmental performance was assessed. Ecospace, the spatial module of EwE, was used to simulate management scenarios: establishment of marine protected areas, extension of the biological rest period, and decrease in the number of demersal trawlers. Results and discussion LCA revealed that fuel consumption by fishing vessels, fuel production, and paint and antifouling production contributed most to environmental impacts. All management plans simulated decreased environmental impacts compared with the baseline scenario. The most effective management plan is extending the rest period, which increases demersal trawler yield and greatly decreases the PPR/catch of demersal trawlers. Conclusions The method developed in this study is relevant for supplementing LCA of fisheries and potentially that of seafood production systems. It provides policy makers with practical information to help implement effective management plans in the context of an ecosystem approach to fisheries.
机译:目的本研究通过在突尼斯(加布湾)进行深海拖网捕捞来评估海鲜生产的环境绩效,以分析每个生产阶段对环境影响的贡献并使用生命周期评估(LCA)来了解影响因素。然后,使用生态系统建模工具Ecopath with Ecosim(EwE)确定了一套生态系统质量指标,并将其与LCA结合使用,以提高两种工具应用于渔业时评估的相关性。方法该方法包括进行LCA和计算生态系统指标,以全面评估拖网捕捞的环境影响和与海产品生产有关的生态系统特征。 LCA的功能单位设置为1吨海鲜,系统边界包括与水下拖网捕捞相关的几个操作阶段。通过EwE计算了几个生态系统指标。在Gabes海湾(突尼斯南部)被开发的生态系统中进行的海底拖网捕捞作为案例研究说明了该方法的适用性。模拟了几个管理计划,并评估了它们对环境绩效的影响。生态空间是EwE的空间模块,用于模拟管理方案:建立海洋保护区,延长生物休止期以及减少拖网渔船的数量。结果与讨论LCA显示,渔船的燃料消耗,燃料生产以及油漆和防污生产对环境的影响最大。与基准方案相比,所有管理计划都模拟了减少的环境影响。最有效的管理计划是延长休息时间,这增加了拖网渔船的产量,并大大降低了拖网渔船的PPR /渔获量。结论本研究开发的方法与补充渔业LCA有关,并可能与海产品生产系统有关。它为政策制定者提供了实用的信息,以帮助他们在生态系统渔业方法中实施有效的管理计划。

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