基于鱼类生物完整性评价梯级水电站对金沙江中游水生态系统健康的影响
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S931.1;X826

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国家重点研发计划( 2021YFC3200104);国家自然科学基金(42271023,42477456)


Assessing the impact of cascade hydropower stations on the aquatic ecosystem health in the middle reaches of Jinsha River based on fish-index of biotic integrity
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National Natural Science Foundation of China

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    摘要:

    为评价梯级水电站对金沙江中游水生态系统健康状况的影响、探索并建立相关评价体系,分别于2021年12月、2022年4月及7月对金沙江中游干流各梯级水电站库区与库尾段和主要支流进行鱼类资源和水环境因子调查。选择2007年4—5月、2008年3—4月、6—7月的历史调查数据作为参照状态,对候选指标依次进行分布范围分析、判别能力分析和冗余度分析,采用比值法建立评价标准,分别构建了适用于金沙江中游干、支流的鱼类生物完整性指数(F-IBI)评价体系,并探究了其与水环境因子间的相关性。结果表明:干流评价指标包括均匀度指数(M3)、鲤科物种数百分比(M4)、中下层鱼类物种数百分比(M11)、漂流性卵鱼类个体数百分比(M18)和鱼类总个体数(M22);支流评价指标包括鳅科物种百分比(M5)、M11、肉食性鱼类个体数百分比(M13)、M18、特殊产卵方式鱼类个体数百分比(M21)和M22。在金沙江中游共设置32个监测点,水生态系统F-IBI分值范围为6.54至63.11分,评价等级为“亚健康”、“一般”、“中风险”“高风险”、“无鱼”的监测点占比分别为3.70%、29.63%、48.15%、11.11%、7.41%。F-IBI值与水温(WT,r=-0.404 9,P=0.044 7)呈显著负相关,与水体透明度(SD,r=0.569 1,P=0.003 0)、流速(vr=0.450 9,P=0.046)呈显著正相关。综上研究,金沙江中游梯级水电站对其水生态系统健康状况产生了较大的影响,且支流受影响情况高于干流。

    Abstract:

    To assess the impact of cascade hydropower stations on the health of aquatic ecosystem in the middle reaches of Jinsha River and to explore and establish relevant evaluation systems, surveys of fish resources and water environmental elements were conducted in December 2021, April 2022, and July 2022 in both the reservoir and tailwater parts of each station and its primary tributaries. Historical survey data from April to May 2007, March to April 2008, and June to July 2008 were utilized as reference conditions. The distribution range, discriminant capacity, and redundancy of the selected indicators were sequentially performed. Evaluation criteria were established through the implementation of the ratio method. Consequently, specific fish-index of biotic integrity (F-IBI) assessment frameworks tailored to both the main stem and tributaries of the Jinsha River were formulated. Additionally, an investigation into the correlation between F-IBI scores and various water environmental factors was undertaken. The results suggested that: Evenness index (M3), percentage of cyprinid species (M4), percentage of mid-lower layer fish species (M11), percentage of individuals of fish producing floating eggs (M18), and total number of fish individuals (M22) were screened out and analyzed as main stem core indicators. While percentage of loach species(M5), M11, percentage of carnivorous fish individuals (M13), M18, percentage of individuals with special spawning methods (M21) and M22 were filtered as tributaries core indicators. 32 monitoring points have been set up in the middle reaches of the Jinsha River. F-IBI scores range from 6.54 to 63.11 points, with evaluation grades of “sub-healthy”, “normal”, “medium risk”, “high risk” and “fishless” accounting for 3.70%, 29.6%, 48.1%, 11.1%, and 7.4% of monitoring points, respectively. In terms of correlations, the F-IBI values demonstrated a significant negative association with water temperature (WT, r=-0.404 9, P=0.044 7) and a significant positive correlation with secchidepth(SD, r=0.569 1, P=0.003 0) and flow velocity (vr=0.450 9, P=0.046). In conclusion, the research results indicated that the cascade hydropower stations in the middle reaches of the Jinsha River exerted a significant impact on the overall health of its aquatic ecosystem, with a notably higher level of impact observed in the tributaries compared to the main stem.

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魏琨宇,崔磊,陈浩,马思颖,刘玲,万帆,何佳.基于鱼类生物完整性评价梯级水电站对金沙江中游水生态系统健康的影响[J].上海海洋大学学报,2025,34(4):771-785.
WEI Kunyu, CUI Lei, CHEN Hao, MA Siying, LIU Ling, WAN Fan, HE Jia. Assessing the impact of cascade hydropower stations on the aquatic ecosystem health in the middle reaches of Jinsha River based on fish-index of biotic integrity[J]. Journal of Shanghai Ocean University,2025,34(4):771-785.

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  • 收稿日期:2024-06-06
  • 最后修改日期:2024-12-21
  • 录用日期:2025-03-05
  • 在线发布日期: 2025-07-13
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