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DMS atmospheric concentrations and sulphate aerosol indirect radiative forcing: a sensitivity study to the DMS source representation and oxidation

机译:DMS大气浓度和硫酸盐气溶胶间接辐射强迫:对DMS源表示和氧化的敏感性研究

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The global sulphur cycle has been simulated using a general circulation model with a focus on the source and oxidation of atmospheric dimethylsulphide (DMS). The sensitivity of atmospheric DMS to the oceanic DMS climatology, the parameterisation of the sea-air transfer and to the oxidant fields have been studied. The importance of additional oxidation pathways (by O3 in the gas- and aqueous-phases and by BrO in the gas phase) not incorporated in global models has also been evaluated. While three different climatologies of the oceanic DMS concentration produce rather similar global DMS fluxes to the atmosphere at 24-27 Tg S yr -1, there are large differences in the spatial and seasonal distribution. The relative contributions of OH and NO3 radicals to DMS oxidation depends critically on which oxidant fields are prescribed in the model. Oxidation by O3 appears to be significant at high latitudes in both hemispheres. Oxidation by BrO could be significant even for BrO concentrations at sub-pptv levels in the marine boundary layer. The impact of such refinements on the DMS chemistry onto the indirect radiative forcing by anthropogenic sulphate aerosols is also discussed.
机译:使用通用循环模型模拟了全球硫循环,重点是大气二甲基硫化物(DMS)的来源和氧化。研究了大气DMS对海洋DMS气候学的敏感性,海洋空气转移的参数化以及对氧化剂场的敏感性。还评估了未纳入全局模型的其他氧化途径(在气相和水相中通过O 3 以及在气相中通过BrO)的重要性。海洋DMS浓度的三种不同气候会在24-27 Tg S yr -1 产生与大气相当的全球DMS通量,但空间和季节分布却存在很大差异。 OH和NO 3 自由基对DMS氧化的相对贡献主要取决于模型中规定的氧化剂场。在两个半球的高纬度地区,O 3 的氧化作用似乎都很明显。即使对于海洋边界层中低于pptv水平的BrO浓度,BrO的氧化作用也可能很重要。还讨论了这种改进对DMS化学反应对人为硫酸盐气溶胶间接辐射强迫的影响。

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