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重新思考通过安全且及时的鱼类通道来兼顾鱼类友好型水泵,以实现有效的保护。

Rethinking fish-friendliness of pumps by shifting focus to both safe and timely fish passage for effective conservation.

机构信息

Hull International Fisheries Institute, University of Hull, Hull, UK.

Energy and Environment Institute, University of Hull, Hull, HU6 7RX, UK.

出版信息

Sci Rep. 2024 Aug 2;14(1):17888. doi: 10.1038/s41598-024-67870-5.

Abstract

Globally, catadromous freshwater eels of the genus Anguilla are of conservation concern, including critically endangered European eel (Anguilla anguilla). Pumping stations that move river water to a higher elevation severely impact eels during their seaward spawning migration. Fish-friendly pumps can mitigate fish injury and mortality but here we uniquely rethink a fish-friendly pump as a fish passage solution. In this pluriannual study, the seasonal timing of pump operation was misaligned with the typical silver eel migration period. Eels were almost exclusively nocturnal but night-time pumping represented as little as 5.6% a year. Night-time eel approaches were primarily influenced by pump duration and temperature, but did not align with lunar phase, unlike in unregulated rivers. After reaching the pumping station, eel passage was influenced by weedscreen aperture and increased when the aperture was increased. Passive sensor collision suggested non-pump infrastructure could cause injury and mortality to eels. It is therefore recommended pump operation should align with the timing of silver eel migration, weedscreen and pump entrance efficiencies should be maximised, and non-pump infrastructure must have low fish injury risk. Ultimately, considering the entire structure a fish passage solution will help ensure fish-friendly pumps have high conservation value for anguillid eels globally.

摘要

全球范围内,鳗鲡属的洄游性淡水鳗类受到保护关注,包括极度濒危的欧洲鳗(Anguilla anguilla)。将河水抽到更高海拔的泵站在鳗鲡向海洄游产卵时会严重影响它们。鱼类友好型的水泵可以减轻鱼类受伤和死亡的风险,但在这里,我们独特地将鱼类友好型水泵重新定义为鱼类洄游通道解决方案。在这项多年研究中,泵站的运行季节与典型的银鳗洄游期不一致。鳗鲡几乎完全是夜间活动,但夜间抽水仅占每年的 5.6%。夜间鳗鲡的洄游主要受水泵持续时间和温度的影响,但与不受监管的河流不同,它们与月相并不一致。到达泵站后,鳗鱼的通过受到滤网孔径的影响,当孔径增加时,通过的鳗鱼数量增加。被动传感器碰撞表明,非泵基础设施可能会对鳗鱼造成伤害和死亡。因此,建议根据银鳗洄游的时间来调整泵站的运行,应最大限度地提高滤网和泵入口的效率,并确保非泵基础设施的鱼类伤害风险较低。最终,考虑到整个结构,鱼类洄游通道解决方案将有助于确保鱼类友好型水泵对全球鳗鲡具有很高的保护价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a10f/11297292/54a7b0d30e21/41598_2024_67870_Fig1_HTML.jpg

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