神戸大学附属図書館デジタルアーカイブ
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https://hdl.handle.net/20.500.14094/0100485850
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2025-05-14
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0100485850 (fulltext)
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3.70 MB
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メタデータID
0100485850
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open access
出版タイプ
Version of Record
タイトル
Conceptual models of dissolved carbon fluxes in a two-layer stratified lake: interannual typhoon responses under extreme climates
著者
Lin, Hao-Chi ; Nakayama, Keisuke ; Tsai, Jeng-Wei ; Chiu, Chih-Yu
著者名
Lin, Hao-Chi
著者ID
A0044
研究者ID
1000060271649
ORCID
0000-0003-2420-1045
KUID
https://kuid-rm-web.ofc.kobe-u.ac.jp/search/detail?systemId=c5a2042377aa64d0520e17560c007669
著者名
Nakayama, Keisuke
中山, 恵介
ナカヤマ, ケイスケ
所属機関名
工学研究科
著者名
Tsai, Jeng-Wei
著者名
Chiu, Chih-Yu
言語
English (英語)
収録物名
Biogeosciences
巻(号)
20(20)
ページ
4359-4376
出版者
Copernicus Publications
刊行日
2023-10-25
公開日
2023-12-21
抄録
Extreme climates affect the seasonal and interannual patterns of carbon (C) distribution in lentic ecosystems due to the regimes of river inflow and thermal stratification. Typhoons rapidly load substantial amounts of terrestrial C into smaller subtropical lakes (i.e., Yuan-Yang Lake in Taiwan, hereafter referred to as YYL), renewing and mixing the water column. We developed a conceptual dissolved C model and hypothesized that allochthonous C loading and river inflow intrusion may affect the dissolved inorganic C (DIC) and dissolved organic C (DOC) distributions in a small subtropical lake under these extreme climates. A two-layer conceptual C model was developed to explore how the DIC and DOC fluxes respond to typhoon disturbances on seasonal and interannual timescales in YYL while simultaneously considering autochthonous processes such as algal photosynthesis, remineralization, and vertical transformation. To compare the temporal patterns of fluxes between typhoon years (2015–2016) and non-typhoon years (2017–2018), monthly field samples were obtained and their DIC, DOC, and chlorophyll a (Chl a) concentrations measured. The results demonstrated that net ecosystem production was 3.14 times higher in typhoon years than in non-typhoon years. These results suggested that a loading of allochthonous C was the most crucial driver of the temporal variation in C fluxes in typhoon years because of changes in physical and biochemical processes, such as photosynthesis, mineralization, and vertical transportation. However, the lowered vertical transportation rate shaped the seasonal C in non-typhoon years due to thermal stratification within this small subtropical lake.
カテゴリ
工学研究科
学術雑誌論文
権利
© Author(s) 2023.
This work is distributed under the Creative Commons Attribution 4.0 License.
関連情報
DOI
https://doi.org/10.5194/bg-20-4359-2023
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資源タイプ
journal article
eISSN
1726-4189
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