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首页> 外文期刊>Journal of atmospheric and solar-terrestrial physics >Transient SO _2 uptake dynamics in an atmospheric water aerosol with internal circulation and chemical dissociation
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Transient SO _2 uptake dynamics in an atmospheric water aerosol with internal circulation and chemical dissociation

机译:具有内部循环和化学离解的大气水气溶胶中的瞬态SO _2吸收动力学

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Transient chemical absorption dynamics of sulfur dioxide by a water aerosol droplet at three Reynolds numbers of 0.643, 1.287, and 12.87 are predicted. In this study, a sinusoidal distribution of velocity at the droplet surface is assumed to approach the flow field inside the droplet and a single-phase simulation method (SPSM) is developed to compare with the two-phase simulation method (TPSM). Considering the physical SO _2 absorption processes with internal circulation, the predictions based the SPSM are very close to those of the TPSM, revealing that the SPSM is a proper method to evaluate the mass transport phenomena for SO _2 uptake by an aerosol droplet. When chemical reactions in the course of absorption are taken into account using the SPSM, it is noteworthy that the transient absorption process is almost independent of the Reynolds number. This arises from that fact that the entire mass transfer process is controlled by mass diffusion and dominated by the dissociation of sulfurous acid (SO _2·H _2O). It is also found that the chemical absorption period is elongated markedly compared to the physical absorption process, approximately by the factors of 5.6-13.1. Eventually, an analysis on the characteristic times of mass transport processes is performed to elucidate mass transport mechanisms and the reasonability of the developed SPSM.
机译:预测了水雾气滴在三个雷诺数分别为0.643、1.287和12.87时的瞬态化学吸收动力学。在这项研究中,假设液滴表面速度的正弦分布接近液滴内部的流场,并开发了单相仿真方法(SPSM)与两相仿真方法(TPSM)进行了比较。考虑到具有内部循环的物理SO _2吸收过程,基于SPSM的预测与TPSM的预测非常接近,这表明SPSM是评估气溶胶液滴吸收SO _2的质量传输现象的合适方法。当使用SPSM将吸收过程中的化学反应考虑在内时,值得注意的是,瞬态吸收过程几乎与雷诺数无关。这是由于以下事实:整个传质过程都受质量扩散的控制,并受亚硫酸(SO _2·H _2O)的解离控制。还发现,与物理吸收过程相比,化学吸收时间明显延长,大约延长了5.6-13.1倍。最后,对传质过程的特征时间进行了分析,以阐明传质机理和开发的SPSM的合理性。

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