Production of fluorescent dissolved organic matter in Arctic Ocean sediments
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作者:
Meilian Chen
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机构:Sejong University,Department of Environment & Energy
Meilian Chen
Ji-Hoon Kim
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机构:Sejong University,Department of Environment & Energy
Ji-Hoon Kim
Seung-Il Nam
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机构:Sejong University,Department of Environment & Energy
Seung-Il Nam
Frank Niessen
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机构:Sejong University,Department of Environment & Energy
Frank Niessen
Wei-Li Hong
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机构:Sejong University,Department of Environment & Energy
Wei-Li Hong
Moo-Hee Kang
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机构:Sejong University,Department of Environment & Energy
Moo-Hee Kang
Jin Hur
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机构:Sejong University,Department of Environment & Energy
Jin Hur
机构:
[1] Sejong University,Department of Environment & Energy
[2] Korea Institute of Geoscience and Mineral Resources,Petroleum & Marine Division
[3] Division of Polar Paleoenvironment Korea Polar Research Institute,Department of Geology
[4] Alfred Wegener Institute,undefined
[5] Helmholtz Centre for Polar and Marine Research (AWI),undefined
[6] CAGE - Centre for Arctic Gas Hydrate,undefined
[7] Environment and Climate,undefined
[8] UiT The Arctic University of Norway,undefined
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Scientific Reports
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摘要:
Little is known about the production of fluorescent dissolved organic matter (FDOM) in the anoxic oceanic sediments. In this study, sediment pore waters were sampled from four different sites in the Chukchi-East Siberian Seas area to examine the bulk dissolved organic carbon (DOC) and their optical properties. The production of FDOM, coupled with the increase of nutrients, was observed above the sulfate-methane-transition-zone (SMTZ). The presence of FDOM was concurrent with sulfate reduction and increased alkalinity (R2 > 0.96, p < 0.0001), suggesting a link to organic matter degradation. This inference was supported by the positive correlation (R2 > 0.95, p < 0.0001) between the net production of FDOM and the modeled degradation rates of particulate organic carbon sulfate reduction. The production of FDOM was more pronounced in a shallow shelf site S1 with a total net production ranging from 17.9 to 62.3 RU for different FDOM components above the SMTZ depth of ca. 4.1 mbsf, which presumably underwent more accumulation of particulate organic matter than the other three deeper sites. The sediments were generally found to be the sources of CDOM and FDOM to the overlying water column, unearthing a channel of generally bio-refractory and pre-aged DOM to the oceans.
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Sejong Univ, Dept Environm & Energy, Seoul 05006, South KoreaSejong Univ, Dept Environm & Energy, Seoul 05006, South Korea
Chen, Meilian
Kim, Ji-Hoon
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Korea Inst Geosci & Mineral Resources, Petr & Marine Div, 124 Gwahang No, Daejeon 34132, South KoreaSejong Univ, Dept Environm & Energy, Seoul 05006, South Korea
Kim, Ji-Hoon
Nam, Seung-Il
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Korea Polar Res Inst, Div Polar Paleoenvironm, Inchon 21990, South KoreaSejong Univ, Dept Environm & Energy, Seoul 05006, South Korea
Nam, Seung-Il
Niessen, Frank
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Helmholtz Ctr Polar & Marine Res AWI, Alfred Wegener Inst, Alten Hafen 26, D-27568 Bremerhaven, GermanySejong Univ, Dept Environm & Energy, Seoul 05006, South Korea
Niessen, Frank
Hong, Wei-Li
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UiT Arctic Univ Norway, Dept Geol, CAGE Ctr Arctic Gas Hydrate Environm & Climate, Tromso, NorwaySejong Univ, Dept Environm & Energy, Seoul 05006, South Korea
Hong, Wei-Li
Kang, Moo-Hee
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Korea Inst Geosci & Mineral Resources, Petr & Marine Div, 124 Gwahang No, Daejeon 34132, South KoreaSejong Univ, Dept Environm & Energy, Seoul 05006, South Korea