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养活全球水产养殖业。

Feeding global aquaculture.

机构信息

Department of Environmental Science and Policy and Abess Center for Ecosystem Science and Policy, University of Miami, Miami, FL, USA.

Science and Strategy Team, Oceana, Washington, DC, USA.

出版信息

Sci Adv. 2024 Oct 18;10(42):eadn9698. doi: 10.1126/sciadv.adn9698. Epub 2024 Oct 16.

Abstract

The growth of animal aquaculture requires ever more feed. Yet, fish and crustacean farming is argued to be sustainable because wild fish use is low and has improved over time. Here, accounting for trimmings and by-products from wild fish in aquaculture feed, and using four different sources of industry-reported feed composition data, we find ratios of fish inputs to farmed outputs of 0.36 to 1.15-27 to 307% higher than a previous estimate of 0.28. Furthermore, a metric that incorporates wild fish mortality during capture and excludes unfed systems raises the wild fish mortality-to-farmed fish output ratio to 0.57 to 1.78. We also evaluate terrestrial ingredients in aquaculture feeds. Widely cited estimates of declines in wild fish use from 1997 to 2017 entailed a trade-off of more than fivefold increase in feed crops over the same period. Our assessment challenges the sustainability of fed aquaculture and its role in food security.

摘要

动物水产养殖的发展需要更多的饲料。然而,人们认为鱼类和甲壳类养殖是可持续的,因为野生鱼类的使用量较低,而且随着时间的推移有所改善。在这里,我们考虑了水产养殖饲料中野生鱼类的切屑和副产品,并使用了四种不同来源的行业报告的饲料成分数据,发现与之前估计的 0.28 相比,鱼类投入与养殖产量的比例高出 0.36 至 1.15-27 至 307%。此外,一种在考虑捕捞过程中野生鱼类死亡率并排除未投喂系统的指标将野生鱼类死亡率与养殖鱼类产量的比例提高到 0.57 至 1.78。我们还评估了水产养殖饲料中的陆生成分。1997 年至 2017 年期间,野生鱼类使用量下降的广泛引用估计数意味着在此期间饲料作物的增长超过了五倍。我们的评估挑战了投喂水产养殖的可持续性及其在粮食安全中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21f1/11482329/3f946a64bb18/sciadv.adn9698-f1.jpg

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