期刊文献+

CO_2 exchange at air-sea interface in the Huanghai Sea 被引量:2

CO_2 exchange at air-sea interface in the Huanghai Sea
下载PDF
导出
摘要 During the Huanghai Sea Circulation and Material Flux Expedition in Spring 1996, fco_2 in surface water and atmosphere was measured. The fco2 in surface water varied in a range from 220 to 360 uatm1) while atmospheric concentration was nearly constant at 360μatm, showing that the Huanghai Sea surface waters were undersaturated with respect to atmospheric Co during the time of investigation. A model was developed in this study in order to estimate the Co flux at the air-sea interface. The model incorporates the time-series variations of the distributions in SST (sea surface temperature), salinity, mixed-layer depth, atmospheric fco2, gas-transfer velocity, and CZCS chlorophyll concentration in the Huanghai Sea and was calibrated with the observed fco2 data. The primary parameter affecting fco2 in surface water is the variation of SST through time. The annual fluxes of Co are estimated as 0. 033 Gt C from the sea into the atmosphere and 0. 044 Gt C from the air into sea. The Huanghai Sea, thus behaves as a CO2 sink absorbing 0. 011 Gi C of CO2 a year. which.corresponds to about 0. 5 % of global oceanic absorption capacity. During the Huanghai Sea Circulation and Material Flux Expedition in Spring 1996, fco_2 in surface water and atmosphere was measured. The fco2 in surface water varied in a range from 220 to 360 uatm1) while atmospheric concentration was nearly constant at 360μatm, showing that the Huanghai Sea surface waters were undersaturated with respect to atmospheric Co during the time of investigation. A model was developed in this study in order to estimate the Co flux at the air-sea interface. The model incorporates the time-series variations of the distributions in SST (sea surface temperature), salinity, mixed-layer depth, atmospheric fco2, gas-transfer velocity, and CZCS chlorophyll concentration in the Huanghai Sea and was calibrated with the observed fco2 data. The primary parameter affecting fco2 in surface water is the variation of SST through time. The annual fluxes of Co are estimated as 0. 033 Gt C from the sea into the atmosphere and 0. 044 Gt C from the air into sea. The Huanghai Sea, thus behaves as a CO2 sink absorbing 0. 011 Gi C of CO2 a year. which.corresponds to about 0. 5 % of global oceanic absorption capacity.
出处 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2000年第1期79-89,共11页 海洋学报(英文版)
关键词 Huanghai Sea CO2 exchange air-sea interface Huanghai Sea, CO2 exchange, air-sea interface
  • 相关文献

参考文献3

  • 1Weiss R. F. B. A.Price (1980) Nitrous oxide solubility in water and seawater[].Marine Chemistry.
  • 2Smith R. C. K. S.Baker (1978) The bio-optical state of ocean waters and remote sensing[].Limnology and Oceanography.
  • 3Yoo,S. K.Shin (1995) Primary productivity in the nearshore region of Taean Peninsula[].Ocean Research.

同被引文献23

  • 1屠建波,王保栋.长江口营养元素生物地球化学研究[J].海洋环境科学,2004,23(4):10-13. 被引量:15
  • 2江春波,张龙军,王峰.南黄海夏季海水pCO_2研究Ⅱ——下层海水涌升和长江冲淡水对海-气界面CO_2通量的贡献[J].中国海洋大学学报(自然科学版),2006,36(B05):147-152. 被引量:7
  • 3Sarmiento J L,Gruher N.Sinks for anthropogenic carbpn. Physics Today . 2002
  • 4Kaltin S,Anderson L G.2</sub> in water transported over the Berig-Chukchi Sea shelf&amp;sid=Marine Chemistry&amp;aufirst=Kaltin S');&#xA; ">Uptake of atmospheric carbon dioxide in Arctic shelf seas:evaluation of the relative importance of processes that influence pCO<sub>2</sub> in water transported over the Berig-Chukchi Sea shelf. Marine Chemistry . 2005
  • 5Kuss,J,Roeder W,Wlost K P,et al.2</sub> and oxygen measurement on a platform in the central Arkona Sea (Baltic Sea):Seasonality of uptake and release&amp;sid=Marine Chem- istry&amp;aufirst=Kuss,J');&#xA; ">Time-series of surface water CO<sub>2</sub> and oxygen measurement on a platform in the central Arkona Sea (Baltic Sea):Seasonality of uptake and release. Marine Chem- istry . 2006
  • 6Yang G P,Jing W W,Li Li,et al.Distridimethylsulfide and dimethyl sulfoniopropionate in the surface microlayer and subsurface water of the Yellow Sea,China during spring. Journal of Marine Systems . 2006
  • 7NOAA Climate Monitoring and Diagnostics Laboratory.Carbon Cy- cle Group.2</sub> data files&amp;sid=ftp://ftp.cmdl. noaa.gov/ccg/co2/in-situ&amp;aufirst=NOAA Climate Monitoring and Diagnostics Laboratory.Carbon Cy- cle Group');&#xA; ">Continuous in-situ CO<sub>2</sub> data files. ftp://ftp.cmdl. noaa.gov/ccg/co2/in-situ . 2004
  • 8Fasham MJR,Balifio BM,Bowles MC.A new vision of ocean biogeochemistry after a decade of the Joint Global Ocean Flux Study(JGOFS). AMBIO Special Report 10 . 2001
  • 9Emerson S,and Archer D.Calcium carbonate preservation in the ocean. Philosophical Transaction of The Royal Society of London Series A . 1990
  • 10Cai W-J,Wang Y-C.The chemistry, fluxes, and sources of carbon dioxide in the esturine waters of the Satilla and Altamaha Rivers, Georgia. Limnology and Oceanography . 1998

引证文献2

二级引证文献8

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部