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水力发电对水库鱼类种群的影响受环境变化的影响。

Hydropower impacts on reservoir fish populations are modified by environmental variation.

机构信息

Department of Aquatic Ecology, Norwegian Institute for Nature Research (NINA), P.O. Box 5685 Torgard, NO-7485 Trondheim, Norway.

Department of Aquatic Ecology, Norwegian Institute for Nature Research (NINA), P.O. Box 5685 Torgard, NO-7485 Trondheim, Norway; Centre for Biodiversity Dynamics, Department of Natural History, NTNU University Museum, Erling Skakkes gate 47A, NO-7013 Trondheim, Norway.

出版信息

Sci Total Environ. 2018 Mar 15;618:313-322. doi: 10.1016/j.scitotenv.2017.10.268. Epub 2017 Nov 10.

Abstract

Global transition towards renewable energy production has increased the demand for new and more flexible hydropower operations. Before management and stakeholders can make informed choices on potential mitigations, it is essential to understand how the hydropower reservoir ecosystems respond to water level regulation (WLR) impacts that are likely modified by the reservoirs' abiotic and biotic characteristics. Yet, most reservoir studies have been case-specific, which hampers large-scale planning, evaluation and mitigation actions across various reservoir ecosystems. Here, we investigated how the effect of the magnitude, frequency and duration of WLR on fish populations varies along environmental gradients. We used biomass, density, size, condition and maturation of brown trout (Salmo trutta L.) in Norwegian hydropower reservoirs as a measure of ecosystem response, and tested for interacting effects of WLR and lake morphometry, climatic conditions and fish community structure. Our results showed that environmental drivers modified the responses of brown trout populations to different WLR patterns. Specifically, brown trout biomass and density increased with WLR magnitude particularly in large and complex-shaped reservoirs, but the positive relationships were only evident in reservoirs with no other fish species. Moreover, increasing WLR frequency was associated with increased brown trout density but decreased condition of individuals within the populations. WLR duration had no significant impacts on brown trout, and the mean weight and maturation length of brown trout showed no significant response to any WLR metrics. Our study demonstrates that local environmental characteristics and the biotic community strongly modify the hydropower-induced WLR impacts on reservoir fishes and ecosystems, and that there are no one-size-fits-all solutions to mitigate environmental impacts. This knowledge is vital for sustainable planning, management and mitigation of hydropower operations that need to meet the increasing worldwide demand for both renewable energy and ecosystem services delivered by freshwaters.

摘要

全球向可再生能源生产的转变增加了对新的和更灵活的水力发电运营的需求。在管理层和利益相关者能够就潜在的缓解措施做出明智的选择之前,了解水力发电水库生态系统如何应对水位调节 (WLR) 影响至关重要,而这些影响可能会受到水库的非生物和生物特征的影响。然而,大多数水库研究都是特定案例的,这阻碍了在各种水库生态系统中进行大规模规划、评估和缓解措施。在这里,我们研究了 WLR 的幅度、频率和持续时间对鱼类种群的影响如何沿环境梯度变化。我们使用挪威水力发电水库中的褐鳟 (Salmo trutta L.) 的生物量、密度、大小、状况和成熟度作为生态系统响应的衡量标准,并测试了 WLR 与湖泊形态、气候条件和鱼类群落结构的相互作用效应。我们的结果表明,环境驱动因素改变了褐鳟种群对不同 WLR 模式的反应。具体来说,褐鳟的生物量和密度随着 WLR 幅度的增加而增加,尤其是在大型和复杂形状的水库中,但这种正相关关系仅在没有其他鱼类物种的水库中明显。此外,增加 WLR 频率与褐鳟密度的增加有关,但会降低种群内个体的状况。WLR 持续时间对褐鳟没有显著影响,褐鳟的平均体重和成熟度也没有对任何 WLR 指标表现出显著反应。我们的研究表明,当地的环境特征和生物群落强烈改变了水力发电引起的 WLR 对水库鱼类和生态系统的影响,没有一种放之四海而皆准的解决方案可以减轻环境影响。这种知识对于可持续规划、管理和缓解水力发电运营至关重要,因为这些运营需要满足全球范围内对可再生能源和淡水提供的生态系统服务的日益增长的需求。

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