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Sensitivity of modelled sulfate aerosol and its radiative effect on climate to ocean DMS concentration and aira??sea flux

机译:模拟的硫酸盐气溶胶的敏感性及其对气候的辐射效应对海洋DMS浓度和Aira ??海通量的影响

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pstrongAbstract./strong Dimethylsulfide (DMS) is a well-known marine trace gas that is emitted from the ocean and subsequently oxidizes to sulfate in the atmosphere. Sulfate aerosols in the atmosphere have direct and indirect effects on the amount of solar radiation reaching the Earth's surface. Thus, as a potential source of sulfate, ocean efflux of DMS needs to be accounted for in climate studies. Seawater concentration of DMS is highly variable in space and time, which in turn leads to high spatial and temporal variability in ocean DMS emissions. Because of sparse sampling (in both space and time), large uncertainties remain regarding ocean DMS concentration. In this study, we use an atmospheric general circulation model with explicit aerosol chemistry (CanAM4.1) and several climatologies of surface ocean DMS concentration to assess uncertainties about the climate impact of ocean DMS efflux. Despite substantial variation in the spatial pattern and seasonal evolution of simulated DMS fluxes, the global-mean radiative effect of sulfate is approximately linearly proportional to the global-mean surface flux of DMS; the spatial and temporal distribution of ocean DMS efflux has only a minor effect on the global radiation budget. The effect of the spatial structure, however, generates statistically significant changes in the global-mean concentrations of some aerosol species. The effect of seasonality on the net radiative effect is larger than that of spatial distribution and is significant at global scale./p.
机译:> >摘要。二甲基硫醚(DMS)是一种众所周知的海洋微量气体,它从海洋中排放出来,随后在大气中被氧化成硫酸盐。大气中的硫酸盐气溶胶对到达地球表面的太阳辐射量具有直接和间接的影响。因此,作为潜在的硫酸盐来源,DMS的海洋外流需要在气候研究中加以考虑。 DMS的海水浓度在空间和时间上变化很大,这反过来导致海洋DMS排放量的高度时空变化。由于采样稀疏(在空间和时间上),关于海洋DMS浓度的不确定性仍然很大。在这项研究中,我们使用具有显式气溶胶化学(CanAM4.1)的大气总循环模型和地表海洋DMS浓度的几种气候来评估关于海洋DMS外排对气候影响的不确定性。尽管模拟DMS通量的空间格局和季节演变存在很大差异,但硫酸盐的全球平均辐射效应与DMS的全球平均表面通量大致成线性比例;海洋DMS外排的时空分布对全球辐射预算只有很小的影响。但是,空间结构的影响在某些气溶胶物种的总体平均浓度上产生了统计上显着的变化。季节对净辐射效应的影响大于空间分布的影响,在全球范围内具有显着意义。

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