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评估用于适应气候变化的替代性湖泊管理行动。

Assessing alternative lake management actions for climate change adaptation.

作者信息

Regev Shajar, Carmel Yohay, Gal Gideon

机构信息

Kinneret Limnological Laboratory, Israel Oceanographic and Limnological Research, 14950000, Migdal, Israel.

Faculty of Civil and Environmental Engineering, The Technion-Israel Institute of Technology, 3200003, Haifa, Israel.

出版信息

Ambio. 2025 Mar;54(3):416-427. doi: 10.1007/s13280-024-02039-y. Epub 2024 Jun 14.

Abstract

Lake management actions are required to protect lake ecosystems that are being threatened by climate change. Freshwater lakes in semiarid regions are of upmost importance to their region. Simulations of the subtropical Lake Kinneret project that rising temperatures will cause change to phytoplankton species composition, including increased cyanobacteria blooms, endangering lake ecosystem services. Using lake ecosystem models, we examined several management actions under climate change, including two alternatives of desalinated water introduction into the lake, hypolimnetic water withdrawal, watershed management changes and low versus high lake water level. To account for prediction uncertainty, we utilized an ensemble of two 1D hydrodynamic-biogeochemical lake models along with 500 realizations of meteorological conditions. Results suggest that supplying desalinated water for local use, thus releasing more natural waters through the Jordan River, increasing nutrient flow, may reduce cyanobacteria blooms, mitigating climate change effects. However, these results are accompanied by considerable uncertainty.

摘要

需要采取湖泊管理行动来保护正受到气候变化威胁的湖泊生态系统。半干旱地区的淡水湖对其所在区域至关重要。对亚热带基尼烈湖的模拟表明,气温上升将导致浮游植物物种组成发生变化,包括蓝藻水华增加,危及湖泊生态系统服务。我们使用湖泊生态系统模型,研究了气候变化下的几种管理行动,包括向湖泊引入淡化水的两种方案、抽取湖下层水、流域管理变化以及湖泊低水位与高水位情况。为了考虑预测的不确定性,我们使用了两个一维水动力 - 生物地球化学湖泊模型的集合以及500种气象条件的实现情况。结果表明,供应淡化水供当地使用,从而通过约旦河释放更多天然水,增加营养物质流动,可能会减少蓝藻水华,减轻气候变化的影响。然而,这些结果伴随着相当大的不确定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/759c/11780036/457bd879b6dd/13280_2024_2039_Fig1_HTML.jpg

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