鄱阳湖北部湖区夏季溶解CH4与CO2浓度昼夜特征
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1.南京信息工程大学生态与应用气象学院;2.中国科学院南京地理与湖泊研究所

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国家自然科学基金联合重点项目(U2240219)、国家重点研发计划项目(2022YFC3204104)、国家自然科学基金面上项目(42271121)


Diurnal Characteristics of Summertime Dissolved CH? and CO? Concentrations at a Northern Site of the Lake Poyang
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Key Laboratory of Lake and Watershed Science for Water Security, Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences

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    摘要:

    全面认识湖泊温室气体吸收和排放特征对于准确估算湖泊碳收支具有重要意义,湖泊温室气体浓度的连续观测是通量估算的基础,对揭示湖泊碳循环过程具有重要作用。目前针对鄱阳湖碳循环研究多集中于湿地植被系统,而对湖泊水体温室气体变化特征认识存在明显不足。本研究开展了夏季鄱阳湖北部典型水域表层(0-0.5 m)及剖面(0.5-8 m)水体甲烷(CH4)和二氧化碳(CO2)浓度高频观测,研究表明,水体CO2 浓度存在显著的昼夜分异特征,白天表层浓度(15.02 μmol/L)显著低于夜间(22.30 μmol/L),垂向剖面存在明显的分层现象;水体CH4 浓度(0.1-0.31 μmol/L)波动显著,但无明显昼夜变化规律。相关性分析显示,CO2浓度与溶解氧、水温和叶绿素含量呈显著负相关(p < 0.01);CH4浓度与净辐射和溶解无机碳(DIC)浓度呈显著正相关关系(p < 0.01)。采样时间代表性分析表明,若仅以白天观测均值代表日均浓度,将导致表层水体CO2 浓度低估 21.74%。就鄱阳湖夏季水体温室气体浓度昼夜特征而言,CH4浓度的最佳采样时间为14-16时,CO2浓度的最佳采样时间为10-12 时。本研究揭示了鄱阳湖水体剖面温室气体浓度的高频日变化特征,可为量化湖泊夏季碳循环关键变量不确定性、准确估算湖泊碳收支提供一定支撑。

    Abstract:

    A comprehensive understanding of the absorption and emission characteristics of greenhouse gases is vital to estimating carbon budget in lakes. For the Poyang Lake, most efforts have been devoted to the study of wetland vegetation instead of that of open waters. Here we conducted high-frequency surface and profiling observations of CH? and CO? concentrations in a northern site of the Poyang Lake open waters during the last summer. The study revealed significant diurnal variations in water CO? concentrations. During daytime, surface CO? concentrations were lower (15.02 μmol/L), with distinct stratification observed in vertical profiles, while nighttime surface concentrations increased (22.30 μmol/L) and vertical gradients became less pronounced. In contrast, CH? concentrations exhibited strong fluctuations without clear diurnal patterns.?CO? concentrations showed significant negative correlations (p < 0.01) with dissolved oxygen (DO), water temperature and chlorophyll content, but positively correlated with relative humidity and nitrate-nitrogen concentrations. CH? concentrations were significantly positively correlated with net radiation irradiance and inorganic carbon (DIC) concentrations (p < 0.01),?and negatively correlated with net longwave radiation (p < 0.01). A single-time sampling is always not temporally representative of daily averages, and only daytime sampling might underestimate the CO? concentration by as high as 19.9%. For the Poyang Lake, the optimal sampling time is 14–16 时 for the CH? concentration, and is 10–12 时 for the CO? concentration. This study revealed the high-frequency diurnal variation characteristics of greenhouse gas concentrations in the Poyang Lake, providing support for quantifying the uncertainties associated with key variables in the carbon cycle and for accurately estimating the lake carbon budget.

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  • 收稿日期:2025-01-21
  • 最后修改日期:2026-01-21
  • 录用日期:2025-07-30
  • 在线发布日期: 2025-08-28
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