高標高都市湿地における生態系炭素交換の年々変動と安定した炭素吸収を支えるメカニズム
Interannual Variability in Ecosystem Carbon Exchange and Mechanisms Sustaining a Stable Carbon Sink in a High-Elevation Urban Wetland (原題)
Jiankang Ling, Xufeng Mao, Xiuhua Song, Hongyan Yu, Kaili Ma, Wu Yi, Yongxiao Yang, Shunbang Xie
🤖 gxceed AI 要約
日本語
中国・西寧の海湖湿地公園で2021〜2024年の渦相関観測を行い、GPP・生態系呼吸・NEEの季節変動と年々変動を解析した。NEEは有効観測日の88.24%で負となり、4年間の累積NEE平均は−437.27 g C m−2 yr−1、変動係数16.9%と安定した純CO2吸収源であった。吸収は放射(PPFD)由来の取り込みと地温(Q10=1.98)由来の放出のバランスで維持され、GPPが呼吸を上回ることで炭素源が持続している。
English
Four years (2021–2024) of eddy covariance data at Haihu Wetland Park, Xining, China, show the high-elevation urban wetland acted as a net CO2 sink on 88.24% of valid days, with mean cumulative NEE of −437.27 g C m−2 yr−1 (CV 16.9%). Sink persistence reflects GPP exceeding ecosystem respiration, while interannual variation depends on their relative changes; GPP saturated with light (α=0.063, GPPmax=20.73) and respiration rose exponentially with soil temperature (Q10=1.98).
Unofficial AI-generated summary based on the public title and abstract. Not an official translation.
📝 gxceed 編集解説 — Why this matters
日本のGX文脈において
日本企業のGX開示に直接資する内容ではないが、都市湿地・自然資本の炭素吸収機能の定量はTNFDや生物多様性・自然資本開示を検討する日本企業にとって参考となる基礎的知見を提供する。
In the global GX context
Adds site-level empirical evidence on urban wetland carbon sink stability to the global stock of nature-based carbon flux observations, relevant to emerging nature and biodiversity disclosure (TNFD) and to verifying the durability assumptions behind natural climate solutions.
👥 読者別の含意
🔬研究者:高標高都市湿地の年々変動と環境応答の実測例として、炭素収支モデルや欠測補間の検証に有用。
🏢実務担当者:自然資本・生物多様性開示や炭素クレジットの吸収源評価を検討する際の基礎データとして参照可能。
🏛政策担当者:都市湿地保全を炭素吸収源政策に位置づける際の観測根拠として示唆を与える。
📄 Abstract(原文)
To characterize ecosystem CO2 exchange and its environmental responses in a high-elevation urban wetland, multi-year eddy covariance observations collected from 2021 to 2024 were used to examine the daily dynamics, seasonal diurnal patterns, and cumulative values during the valid observation period of each year for gross primary productivity (GPP), ecosystem respiration (Reco), and net ecosystem CO2 exchange (NEE) in Haihu Wetland Park, Xining, China. A light-response model, an exponential temperature-response model, Pearson correlation analysis, and Mantel tests were further applied to evaluate the relationships between carbon fluxes and environmental factors. Both GPP and Reco showed a unimodal seasonal pattern, increasing concurrently during the growing season and decreasing during the non-growing season. NEE was negative on 88.24% of the valid observation days, indicating that the ecosystem predominantly acted as a net CO2 sink. Cumulative NEE during the valid observation periods was −444.57, −525.36, −344.92, and −434.23 g C m−2 yr−1, respectively. The mean of these four cumulative NEE values was −437.27 g C m−2 yr−1, with an interannual coefficient of variation of 16.9%. Among the respective valid observation periods, net CO2 uptake was greatest in 2022 and weakest in 2023. Sensitivity analyses of the prolonged data gaps indicated that 2022 retained the greatest magnitude of net CO2 uptake under both reconstruction scenarios. Cumulative GPP exceeded cumulative Reco in all four years, suggesting that the persistent carbon sink was maintained by ecosystem carbon input remaining greater than carbon loss, whereas interannual variation in sink strength depended on the relative changes in GPP and Reco. GPP showed a nonlinear saturating response to photosynthetic photon flux density (PPFD). Fitting a rectangular hyperbolic model to the unbinned valid 30 min data yielded an apparent initial quantum yield (α) of 0.06296 and a GPPmax of 20.73 μmol m−2 s−1. Reco increased exponentially with soil temperature at 5 cm depth (Ts5), with a temperature sensitivity coefficient (Q10) of 1.98. Correlation analyses further showed relatively strong associations between GPP and PPFD and between Reco and Ts5, while air temperature, soil temperature, radiation, and vapor pressure deficit exhibited clear seasonal covariation. Overall, Haihu Wetland remained a net CO2 sink during the respective valid observation periods in all four years, although sink strength varied among years. The persistence of this sink reflects the combined effects of radiation-related carbon uptake and temperature-related carbon release.
🔗 Provenance — このレコードを発見したソース
- openalex https://doi.org/10.3390/atmos17100959first seen 2026-10-02 04:53:37
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