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Using triple oxygen isotopes and oxygen-argon ratio to quantify ecosystem production in the mixed layer of northern South China Sea slope region

Using triple oxygen isotopes and oxygen-argon ratio to quantify ecosystem production in the mixed layer of northern South China Sea slope region

作     者:Zhuoyi Zhu Jun Wang Guiling Zhang Sumei Liu Shan Zheng Xiaoxia Sun Dongfeng Xu Meng Zhou Zhuoyi Zhu;Jun Wang;Guiling Zhang;Sumei Liu;Shan Zheng;Xiaoxia Sun;Dongfeng Xu;Meng Zhou

作者机构:School of OceanographyShanghai Jiao Tong UniversityShanghai 200030China State Key Laboratory of Estuarine and Coastal ResearchEast China Normal UniversityShanghai 200241China State Key Laboratory of Satellite Ocean Environment DynamicsSecond Institute of OceanographyMinistry of Natural ResourcesHangzhou 310012China Key Laboratory of Marine Chemistry Theory and Technology of Ministry of EducationOcean University of ChinaQingdao 266100China Laboratory for Marine Ecology and Environmental SciencePilot National Laboratory for Marine Science and Technology(Qingdao)Qingdao 266237China Jiaozhou Bay National Marine Ecosystem Research StationInstitute of OceanologyChinese Academy of SciencesQingdao 266071China 

出 版 物:《Acta Oceanologica Sinica》 (海洋学报(英文版))

年 卷 期:2021年第40卷第6期

页      面:1-15页

核心收录:

学科分类:0710[理学-生物学] 0908[农学-水产] 070703[理学-海洋生物学] 07[理学] 0707[理学-海洋科学] 

基  金:The National Key Research and Development Programs of China of the Ministry of Science and Technology under contract Nos 2020YFA0608301,2014CB441503 the National Natural Science Foundation of China under contract Nos 41976042,41776122 the Fundamental Research Funds for the Central Universities the Taishan Scholars Program of Shandong Province,China 

主  题:gross primary production net community production triple oxygen isotopes O_(2)/Ar air-sea gas flux piston velocity 

摘      要:Quantifying the gross and net production is an essential component of carbon cycling and marine ecosystem *** oxygen isotope measurements and the O_(2)/Ar ratio are powerful indices in quantifying the gross primary production and net community production of the mixed layer zone,*** there is a substantial advantage in refining the gas exchange term and water column vertical mixing calibration,application of mixed layer depth history to the gas exchange term and its contribution to reducing indices error are ***,two cruises were conducted in the slope regions of the northern South China Sea in October 2014(autumn)and June 2015(spring).Discrete water samples at Station L07 in the upper 150 m depth were collected for the determination ofδ^(17)0,δ^(18)O,and the O_(2)/Ar ratio of dissolved *** oxygen production(GOP)was estimated using the triple oxygen isotopes of the dissolved O_(2),and net oxygen production(NOP)was calculated using O_(2)/Ar ratio and O_(2)*** vertical mixing effect in NOP was calibrated via a N_(2)O based *** for autumn and spring was(169±23)mmol/(m^(2)·d)(by O_(2))and(189±26)mmol/(m^(2)·d)(by O_(2)),*** NOP was 1.5 mmol/(m^(2)·d)(by O_(2))in autumn and 8.2 mmol/(m^(2)·d)(by O_(2))in *** of mixed layer depth history in the gas flux parametrization reduced up to 9.5%error in the GOP and NOP estimations.A comparison with an independent O_(2)budget calculation in the diel observation indicated a26%overestimation in the current GOP,likely due to the vertical mixing *** GOP and NOP in June were higher than those in *** explanations for this include the occurrence of an eddy process in June,which may have exerted a submesoscale upwelling at the sampling station,and also the markedly higher terrestrial impact in June.

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