| Li Xingsheng,Li Zhe,F. Parungo,C. Nagamoto.The concentration and distribution of dimethyl sulfide in the marine atmospheric boundary layer near the equator[J].Acta Oceanologica Sinica,1995,(3):355-369 |
| The concentration and distribution of dimethyl sulfide in the marine atmospheric boundary layer near the equator |
| The concentration and distribution of dimethyl sulfide in the marine atmospheric boundary layer near the equator |
| 投稿时间:1994-08-20 修订日期:1995-05-18 |
| DOI: |
| 中文关键词: Dimethyl sulfide marine atmospheric boundary layer equator |
| 英文关键词:Dimethyl sulfide marine atmospheric boundary layer equator |
| 基金项目: |
| 作者 | 单位 | | Li Xingsheng | Chinese Academy of Meteorological Science, State Meteorological Administration, Beijing, China | | Li Zhe | NOAA/ERL, Air Resources Laboratory, Boulder, CO 80303, U. S. A | | F. Parungo | NOAA/ERL, Air Resources Laboratory, Boulder, CO 80303, U. S. A | | C. Nagamoto | NOAA/ERL, Air Resources Laboratory, Boulder, CO 80303, U. S. A |
|
| 摘要点击次数: 817 |
| 全文下载次数: 564 |
| 中文摘要: |
A one-dimensional photochemical model with parameterized vertical eddy diffusion is used to simulate the dimethyl sulfide (DMS) in the marine atmospheric boundary layer near the equator.The boundary condition of the DMS flux over sea surface is assigned from gas exchange models that depend on sea surface wind speed and DMS concentration in surface water.Photolysis rates at various altitudes are calculated as a function of solar zenith angle, and the radiation calculation includes ozone absorption, surface reflection and molecular scattering. The simulated results of the DMS diurnal cycle are in good agreement with the observations.Sensitivity tests of the model indicate that the concentration of the DMS in the marine surface layer appears to be affected by a combination of chemical processes and meteorological conditions.In addition, photochemical processes are rather important.The reaction of the DMS with.OH radical, the heterogeneous conversion of SO2 and the deposition of NSS-SO4- and the methanesulfonic acid (MSA) are critical factors of controlling the DMS, SO2, NSS-SO4- and the MSA concentrations and distributions in the atmosphere.The DMS concentration in air is directly proportional to surface wind speed, but it is inversely proportional to boundary layer height in the convective boundary layer.The distributions of the DMS concentrations in sir are strongly influenced by atmospheric stratification in stable conditions. |
| 英文摘要: |
A one-dimensional photochemical model with parameterized vertical eddy diffusion is used to simulate the dimethyl sulfide (DMS) in the marine atmospheric boundary layer near the equator.The boundary condition of the DMS flux over sea surface is assigned from gas exchange models that depend on sea surface wind speed and DMS concentration in surface water.Photolysis rates at various altitudes are calculated as a function of solar zenith angle, and the radiation calculation includes ozone absorption, surface reflection and molecular scattering. The simulated results of the DMS diurnal cycle are in good agreement with the observations.Sensitivity tests of the model indicate that the concentration of the DMS in the marine surface layer appears to be affected by a combination of chemical processes and meteorological conditions.In addition, photochemical processes are rather important.The reaction of the DMS with.OH radical, the heterogeneous conversion of SO2 and the deposition of NSS-SO4- and the methanesulfonic acid (MSA) are critical factors of controlling the DMS, SO2, NSS-SO4- and the MSA concentrations and distributions in the atmosphere.The DMS concentration in air is directly proportional to surface wind speed, but it is inversely proportional to boundary layer height in the convective boundary layer.The distributions of the DMS concentrations in sir are strongly influenced by atmospheric stratification in stable conditions. |
|
查看全文
查看/发表评论 下载PDF阅读器 |
| 关闭 |
|
|
|