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Upper tropospheric SO2 conversion into sulfuric acid aerosols and cloud condensation nuclei

机译:对流层中的SO2转化为硫酸气溶胶和云凝结核

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摘要

We have investigated the potential of upper tropospheric cloud condensation nuclei (CCN) formation hom sulfur dioxide, This process involves three steps including SO2 conversion to gaseous sulfuric acid (GSA), homogeneous bimolecular nucleation of GSA and water vapor leading to new aerosol particles, and new aerosol particle growth via mutual coagulation and GSA-H2O condensation. Our investigation includes both measurements of SO2 and GSA as well as model calculations of SO2 conversion to new aerosol particles ill the presence of preexisting aerosols which act as a competing sink for GSA, The model reproduces the measured abundance ratio GSA-SO2 reasonably well. Furthermore, the model predicts that efficient upper tropospheric CCN formation from SO2 may, in fact, occur under certain plausible conditions. These conditions are explored utilizing the factor F-CCN: defined as a ratio of the source and sink terms of gaseous sulfuric acid. In particular, a threshold F-CCN value for efficient CCN formation is calculated with the model. [References: 32]
机译:我们研究了二氧化硫中对流层上层云凝结核(CCN)形成的潜力。该过程涉及三个步骤,包括将SO2转化为气态硫酸(GSA),GSA和水蒸气的均相双分子成核,从而产生新的气溶胶颗粒,以及通过相互凝结和GSA-H2O冷凝产生新的气溶胶颗粒生长。我们的研究既包括对SO2和GSA的测量,也包括在存在作为GSA竞争性下沉的气溶胶的情况下,SO2转化为新的气溶胶颗粒的模型计算。该模型可以很好地重现测得的GSA-SO2丰度比。此外,该模型预测,实际上,在某些合理的条件下可能会发生由SO2有效形成对流层CCN的现象。利用F-CCN因子探索这些条件:F-CCN定义为气态硫酸的源项和宿项之比。特别地,利用该模型计算用于有效CCN形成的阈值F-CCN值。 [参考:32]

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