Comparison of air-sea CO2 flux and biological productivity in the South China Sea, East China Sea, and Yellow Sea: a three-dimensional physical-biogeochemical modeling study

被引:16
作者
Ji, Xuanliang [1 ,2 ]
Liu, Guimei [1 ,2 ]
Gao, Shan [1 ,2 ]
Wang, Hui [1 ,2 ]
Zhang, Miaoyin [1 ,2 ]
机构
[1] Natl Marine Environm Forecasting Ctr, Beijing 100081, Peoples R China
[2] State Ocean Adm, Natl Marine Environm Forecasting Ctr, Key Lab Res Marine Hazards Forecasting, Beijing 100081, Peoples R China
基金
中国国家自然科学基金;
关键词
physical-biogeochemical model; air to sea CO2 flux; South China Sea; East China Sea; Yellow Sea; CARBON-CYCLE; INTERANNUAL VARIABILITY; SEASONAL-VARIATION; CHLOROPHYLL-A; OCEANIC CO2; DYNAMICS; MARGINS; WESTERN; SYSTEM; LAYER;
D O I
10.1007/s13131-017-1098-8
中图分类号
P7 [海洋学];
学科分类号
0707 ;
摘要
Marginal seas play important roles in regulating the global carbon budget, but there are great uncertainties in estimating carbon sources and sinks in the continental margins. A Pacific basin-wide physical-biogeochemical model is used to estimate primary productivity and air-sea CO2 flux in the South China Sea (SCS), the East China Sea (ECS), and the Yellow Sea (YS). The model is forced with daily air-sea fluxes which are derived from the NCEP2 reanalysis from 1982 to 2005. During the period of time, the modeled monthly-mean air-sea CO2 fluxes in these three marginal seas altered from an atmospheric carbon sink in winter to a source in summer. On annualmean basis, the SCS acts as a source of carbon to the atmosphere (16 Tg/a, calculated by carbon, released to the atmosphere), and the ECS and the YS are sinks for atmospheric carbon (-6.73 Tg/a and-5.23 Tg/a, respectively, absorbed by the ocean). The model results suggest that the sea surface temperature (SST) controls the spatial and temporal variations of the oceanic pCO(2) in the SCS and ECS, and biological removal of carbon plays a compensating role in modulating the variability of the oceanic pCO(2) and determining its strength in each sea, especially in the ECS and the SCS. However, the biological activity is the dominating factor for controlling the oceanic pCO(2) in the YS. The modeled depth-integrated primary production (IPP) over the euphotic zone shows seasonal variation features with annual-mean values of 293, 297, and 315 mg/(m(2)center dot d) in the SCS, the ECS, and the YS, respectively. The model-integrated annual-mean new production (uptake of nitrate) values, as in carbon units, are 103, 109, and 139 mg/(m(2)center dot d), which yield the f-ratios of 0.35, 0.37, and 0.45 for the SCS, the ECS, and the YS, respectively. Compared to the productivity in the ECS and the YS, the seasonal variation of biological productivity in the SCS is rather weak. The atmospheric pCO(2) increases from 1982 to 2005, which is consistent with the anthropogenic CO2 input to the atmosphere. The oceanic pCO(2) increases in responses to the atmospheric pCO(2) that drives air-sea CO2 flux in the model. The modeled increase rate of oceanic pCO(2) is 0.91 mu atm/a in the YS, 1.04 mu atm/a in the ECS, and 1.66 mu atm/a in the SCS, respectively.
引用
收藏
页码:1 / 10
页数:10
相关论文
共 47 条
[1]   Interannual variability of oceanic CO2 and biogeochemical properties in the Western North Atlantic subtropical gyre [J].
Bates, NR .
DEEP-SEA RESEARCH PART II-TOPICAL STUDIES IN OCEANOGRAPHY, 2001, 48 (8-9) :1507-1528
[2]   OPEN BOUNDARY-CONDITION FOR CIRCULATION MODELS [J].
BLUMBERG, AF ;
KANTHA, LH .
JOURNAL OF HYDRAULIC ENGINEERING-ASCE, 1985, 111 (02) :237-255
[3]   Air-sea exchange of carbon dioxide in ocean margins: A province-based synthesis [J].
Cai, Wei-Jun ;
Dai, Minhan ;
Wang, Yongchen .
GEOPHYSICAL RESEARCH LETTERS, 2006, 33 (12)
[4]   Seasonal and Interannual Variability of Carbon Cycle in South China Sea: A Three-Dimensional Physical-Biogeochemical Modeling Study [J].
Chai, Fei ;
Liu, Guimei ;
Xue, Huijie ;
Shi, Lei ;
Chao, Yi ;
Tseng, Chun-Mao ;
Chou, Wen-Chen ;
Liu, Kon-Kee .
JOURNAL OF OCEANOGRAPHY, 2009, 65 (05) :703-720
[5]   Importance of planktonic community respiration on the carbon balance of the East China Sea in summer [J].
Chen, Chung-Chi ;
Chiang, Kuo-Ping ;
Gong, Gwo-Ching ;
Shiah, Fuh-Kwo ;
Tseng, Chun-Mao ;
Liu, Kon-Kee .
GLOBAL BIOGEOCHEMICAL CYCLES, 2006, 20 (04)
[6]   Roles of continental shelves and marginal seas in the biogeochemical cycles of the North Pacific Ocean [J].
Chen, CTA ;
Andreev, A ;
Kim, KR ;
Yamamoto, M .
JOURNAL OF OCEANOGRAPHY, 2004, 60 (01) :17-44
[7]   Spatial and seasonal variations of nitrate-based new production and primary production in the South China Sea [J].
Chen, YFL .
DEEP-SEA RESEARCH PART I-OCEANOGRAPHIC RESEARCH PAPERS, 2005, 52 (02) :319-340
[8]  
Chen YLL, 2003, DEEP-SEA RES PT II, V50, P1249, DOI 10.1016/S0967-0645(03)00021-3
[9]   Seasonal variability of carbon chemistry at the SEATS time-series site, northern South China Sea between 2002 and 2003 [J].
Chou, WC ;
Sheu, DDD ;
Chen, CTA ;
Wang, SL ;
Tseng, CM .
TERRESTRIAL ATMOSPHERIC AND OCEANIC SCIENCES, 2005, 16 (02) :445-465
[10]   The carbonate system in the East China Sea in winter [J].
Chou, Wen-Chen ;
Gong, Gwo-Ching ;
Tseng, Chun-Mao ;
Sheu, David D. ;
Hung, Chin-Chang ;
Chang, Lo-Ping ;
Wang, Li-Wen .
MARINE CHEMISTRY, 2011, 123 (1-4) :44-55