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并非所有的三文鱼都是平等的:全球三文鱼养殖系统的生命周期评估 (LCA)。

Not all salmon are created equal: life cycle assessment (LCA) of global salmon farming systems.

机构信息

School for Resource and Environmental Studies, Dalhousie University, Halifax, Nova Scotia.

出版信息

Environ Sci Technol. 2009 Dec 1;43(23):8730-6. doi: 10.1021/es9010114.

Abstract

We present a global-scale life cycle assessment of a major food commodity, farmed salmon. Specifically, we report the cumulative energy use, biotic resource use, and greenhouse gas, acidifying, and eutrophying emissions associated with producing farmed salmon in Norway, the UK, British Columbia (Canada), and Chile, as well as a production-weighted global average. We found marked differences in the nature and quantity of material/energy resource use and associated emissions per unit production across regions. This suggests significant scope for improved environmental performance in the industry as a whole. We identify key leverage points for improving performance, most notably the critical importance of least-environmental cost feed sourcing patterns and continued improvements in feed conversion efficiency. Overall, impacts were lowest for Norwegian production in most impact categories, and highest for UK farmed salmon. Our results are of direct relevance to industry, policy makers, eco-labeling programs, and consumers seeking to further sustainability objectives in salmon aquaculture.

摘要

我们对一种主要的食品商品——养殖三文鱼进行了全球范围内的生命周期评估。具体而言,我们报告了在挪威、英国、不列颠哥伦比亚(加拿大)和智利生产养殖三文鱼相关的累计能源使用、生物资源使用以及温室气体、酸化和富营养化排放,以及生产加权的全球平均值。我们发现,各地区单位生产的物质/能源资源使用和相关排放的性质和数量存在显著差异。这表明整个行业有很大的空间可以提高环境绩效。我们确定了提高绩效的关键着力点,最显著的是最具环境成本效益的饲料采购模式和持续提高饲料转化率的重要性。总体而言,在大多数影响类别中,挪威生产的三文鱼的影响最低,而英国养殖的三文鱼的影响最高。我们的研究结果与行业、政策制定者、生态标签计划以及寻求在三文鱼水产养殖中进一步实现可持续性目标的消费者直接相关。

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