富营养化浅水湖泊生态修复对水质与含碳温室气体通量的影响——以南京玄武湖为例
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1:江苏海洋大学,连云港 222005 ;2:中国科学院南京地理与湖泊研究所,湖泊与流域水安全全国重点实验室,南京 211135

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国家自然科学基金重点项目(32471640)、国家自然科学基金面上项目、江苏省“碳专项”江苏山水林田湖草生态修复固碳科学问题研究(BK20231515)和富营养化湖泊生态修复和碳汇能力提升的协同技术基础(BK20220015)联合资助


Impacts of ecological restoration on water quality and carbon-containing greenhouse gas fluxes in a shallow, eutrophic lake: A case study of Lake Xuanwu, Nanjing
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1:Jiangsu Ocean University, Lianyungang 222005 , P.R.China ;2:State Key Laboratory of Lake and Watershed Science for Water Security, Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences, Nanjing 211135 , P.R.China

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    摘要:

    随着经济快速发展,湖泊等淡水生态系统出现了不同程度的富营养化现象,并引发一系列水生态问题,如水质恶化、生物多样性下降等。富营养化浅水湖泊生态修复最关键的步骤是实现初级生产者从浮游植物向大型水生高等植物的转换。目前的湖泊生态修复工程实践往往只强调水质改善,缺乏对温室气体通量影响方面的研究。本研究通过对南京玄武湖修复区与未修复区进行采样调查,比较了两类区域水体理化参数与水-气界面的CO2和CH4通量。结果表明,玄武湖未修复区叶绿素a(Chl.a)浓度在4个季节均显著高于修复区,夏季最高可达修复区Chl.a的5倍之多。未修复区的总氮(TN)、总磷(TP)浓度同样显著高于修复区。修复区内CO2通量在各季节均远低于未修复区。就水-气界面CH4扩散通量而言,未修复区的CH4扩散通量在各季节均比修复区的CH4扩散通量高。在未修复区内,浮游植物生物量与TP、pH、Chl.a有较强的正相关性,而与硝态氮、溶解性无机碳等有较强的负相关性。此外,含碳温室气体通量(CO2、CH4)与TN、TP有较强的正相关关系,与溶解氧有较强的负相关关系。在修复区内,沉水植物生物量与盐度、电导率具有较强的正相关性,与氨氮、磷酸盐以及CO2、CH4通量均呈负相关关系。总体而言,生态修复既改善了富营养化浅水湖泊水质,也降低了含碳温室气体通量。本研究将为提高湖泊固碳增汇功能提供科学参考。

    Abstract:

    In the context of accelerated economic development, freshwater ecosystems are increasingly subject to the process of eutrophication, which has precipitated a series of ecological issues within aquatic environments, including water quality deterioration and a decline in biodiversity. The most critical step in the ecological restoration of eutrophic shallow lakes is to achieve the transition of primary producers from phytoplankton to submerged macrophytes. Current ecological restoration projects of lakes frequently emphasize water quality improvement, yet research on the impact on greenhouse gas fluxes is lacking. This study investigated the restored and unrestored areas of Lake Xuanwu (Nanjing) to compare the physicochemical parameters of the water and the carbon dioxide (CO2) and methane (CH4) fluxes at the water-atmosphere interface between the two areas. The results demonstrated that the concentration of chlorophyll-a (Chl.a) in the unrestored area was significantly higher than that in the restored area in all four seasons, reaching up to five times as much in the summer. The concentrations of total nitrogen (TN) and phosphorus (TP) in the unrestored area were found to be significantly higher than those in the restored area. The CO2 diffusion flux in the restored area was consistently lower than that observed in the unrestored area across all seasons. The CH4 diffusion flux at the water-atmosphere interface in the unrestored area was found to be higher than that in the restored area in all seasons. Within the unrestored area, the phytoplankton biomass demonstrated a strong positive correlation with TP, pH, and Chl.a, and a strong negative correlation with nitrate nitrogen, dissolved inorganic carbon, etc. In the area that had been restored, there was a strong positive correlation between the submerged plant biomass and salinity and conductivity, and a negative correlation with ammonia nitrogen, phosphate, CO2 and CH4 fluxes. It is evident that ecological restoration has a multifaceted impact on the environment, including the enhancement of water quality in eutrophic shallow lakes and the reduction of carbon-containing greenhouse gas emissions. The objective of the present study is to provide scientific references for the purpose of improving the carbon sequestration and sink function of lakes.

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梅彦昆,苏雅玲,董志国,樊施明,李宽意,邢鹏,吴庆龙.富营养化浅水湖泊生态修复对水质与含碳温室气体通量的影响——以南京玄武湖为例.湖泊科学,2025,37(6):1978-1987. DOI:10.18307/2025.0618

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  • 收稿日期:2024-07-13
  • 最后修改日期:2025-05-26
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  • 在线发布日期: 2025-11-03
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