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生态学杂志 ›› 2026, Vol. 45 ›› Issue (6): 1993-2001.doi: 10.13292/j.1000-4890.202606.035

• 研究报告 • 上一篇    下一篇

调水调沙对黄河镉入海通量和生态风险的影响

张思轩1,桑昌鹏1,李恩锐1,王少锋1,曾祥峰2*   

  1. 1大连理工大学环境学院, 工业生态与环境工程教育部重点实验室, 辽宁大连 116024; 2中国科学院沈阳应用生态研究所, 污染生态与环境工程重点实验室, 沈阳 110016)
  • 出版日期:2026-06-10 发布日期:2026-12-01

Impact of water-sediment regulation on cadmium flux to the sea and ecological risk in the Yellow River.

ZHANG Sixuan1, SANG Changpeng1, LI Enrui1, WANG Shaofeng1, ZENG Xiangfeng2*   

  1. (1Key Laboratory of Industrial Ecology and Environmental Engineering (Ministry of Education China), School of Environmental Science and Technology, Dalian University of Technology, Dalian 116024, Liaoning, China; 2Key Laboratory of Pollution Ecology and Environmental Engineering, Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang 110016, China).

  • Online:2026-06-10 Published:2026-12-01

摘要: 黄河作为我国重要入海河流,是渤海微量金属元素等物质输入的主要来源,有毒重金属镉(Cd)在黄河的迁移转化行为直接关系到流域生态安全与渤海近海环境质量。自2002年调水调沙工程实施以来,有很多研究开始关注工程对泥沙通量的调控效应,而对Cd的入海通量、形态分布和生态风险缺乏系统研究。本研究通过2023年在黄河干流7个点位的系统采样,分析了调水调沙期间Cd的迁移转化特征及其驱动机制。结果表明,Cd主要以颗粒态形式输送,花园口点位颗粒态通量为23463 kg·a-1,溶解态Cd通量为2591 kg·a-1;利津点位颗粒态通量为17776 kg·a-1,而溶解态通量为1169 kg·a-1;调沙期的Cd通量显著高于其他时期,主要受水流流速、悬浮颗粒物浓度及底泥扰动强度的调控。悬浮颗粒物和沉积物中可利用态Cd的浓度较高,表明其具有较高的潜在生态风险;污染指数Eri值显示颗粒物具有较高的环境污染风险,调沙期Cd再悬浮导致短期风险升高,而枯水期沉积物Cd积累可能引发长期生态威胁,其入海后的生物有效性也需持续关注。研究揭示了调水调沙工程对Cd环境行为的显著影响,为黄河流域水环境质量改善和生态安全保障提供了科学依据。


关键词: 黄河调水调沙, 镉形态, 入海通量, 悬浮颗粒物, 生态风险

Abstract: The Yellow River, as an important river flowing into the Bohai Sea, is the main source of trace metal elements in the Bohai Sea. The transformation behavior of cadmium (Cd) directly affects the ecological security of the basin and the environmental quality of the Bohai Sea. Since the implementation of the water and sediment regulation project in 2002, the regulation effect of the project on sediment flux has been well studied, but there is a lack of systematic research on the flux, speciation distribution and ecological risk of Cd. We conducted systematic samplings at seven sites along the main stream of the Yellow River in 2023 and then analyzed the migration and transformation characteristics of Cd and their driving mechanisms during the water and sediment regulation period. The results showed that Cd was mainly transported in the particulate form. The particulate flux at the Huayuankou site was 23463 kg·a-1, and the dissolved flux was 2591 kg·a-1. At the Lijin site, the particulate flux was 17776 kg·a-1, and the dissolved flux was 1169 kg·a-1. The Cd flux during the sediment regulation period was significantly higher than that in other periods, mainly regulated by water flow velocity, suspended sediment concentration and the intensity of bottom sediment disturbance. The concentrations of available Cd in suspended particulate matter and sediments were relatively high, indicating a high potential ecological risk. The pollution index Eri value indicated that particulate matter had a high risk of environmental pollution. The resuspension of Cd during the sediment regulation period led to an increase in short-term risk, while the accumulation of Cd in sediments during the dry season might cause long-term ecological threats. Further attention should be paid to its bioavailability after entering the sea. By revealing the significant impact of the water and sediment regulation project on the environmental behavior of Cd, this study provides a scientific basis for improving water environmental quality and ensuring ecological security in the Yellow River Basin.


Key words: water-sediment regulation, cadmium speciation, flux to the sea, suspended particulate matter, ecological risk