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System delimitation in life cycle assessment (LCA) of aquaculture: striving for valid and comprehensive environmental assessment using rainbow trout farming as a case study

机译:水产养殖生命周期评估(LCA)中的系统划分:以虹鳟养殖为例,努力进行有效而全面的环境评估

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Purpose Life cyc,le assessment (LCA) has been in the last one decade used as a standardized and structured method of evaluating the environmental impacts of aquaculture arising throughout the entire life cycle. However, aquaculture system hardly applied system expansion whenever a multifunctional process has more than one functional flow. The objective of this study is to develop a methodological approach for consequential LCA and model the system expansion of the different affected processes of aquaculture. Methods In this study, we have considered the system expansion in two different stages in the life cycle of the fish production: aquacultural stage, with case study of trout aquaculture, and feed manufacturing stage. Rainbow trout (Oncorhynchus mykiss) production was used as a case study to illustrate the method using different scenarios of system expansion. Results and discussion The results of the six different scenarios of system expansion showed considerable variation among the different scenarios towards the environmental impact of trout aquaculture. Regarding global warming potential, the contributions vary by 5-fold; for acidification, variations were up to 32 %, and for land use, the contributions varied from 0.6 to 1.3 m~2a/kg of trout demanded in Germany. It appeared that eutrophication is similar in all the scenarios considered. Conclusions This article showed that system expansion can be used to handle the allocation issues of the co-products in the rainbow trout supply chain, thus, can be effectively used when analyzing the environmental consequences of changes in future rainbow trout production. Furthermore, consequential LCA may be important when comparing the impacts of alternative meal choices of aquafeeds. This may increase the incentive for speedy replacement of alternative meals, thus, reducing the dependence on the utilization of the limiting fisheries resources.
机译:目的生命周期评估(LCA)在过去十年中被用作评估整个生命周期中水产养殖环境影响的标准化和结构化方法。但是,每当多功能过程具有多个功能流程时,水产养殖系统几乎就不会应用系统扩展。这项研究的目的是为相应的LCA开发一种方法学方法,并对不同的水产养殖过程的系统扩展进行建模。方法在本研究中,我们考虑了鱼类生产生命周期中两个不同阶段的系统扩展:水产养殖阶段(以鳟鱼水产养殖为例)和饲料生产阶段。以虹鳟鱼(Oncorhynchus mykiss)生产为例,以说明使用不同系统扩展方案的方法。结果与讨论六个不同的系统扩展方案的结果表明,在不同的方案中,鳟鱼养殖对环境的影响存在很大差异。关于全球变暖的潜力,贡献变化了5倍;在德国,酸化的变化幅度最大为32%,土地使用的变化幅度为0.6到1.3 m〜2a / kg鳟鱼。似乎在所有考虑的情况下富营养化都是相似的。结论本文表明,系统扩展可用于处理虹鳟鱼供应链中副产品的分配问题,从而可有效地用于分析未来虹鳟鱼生产变化的环境后果。此外,在比较水产饲料替代膳食选择的影响时,相应的LCA可能很重要。这可以增加迅速更换替代性膳食的动力,从而减少对有限渔业资源利用的依赖。

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