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首页> 外文期刊>Journal of Aerosol Science >Incorporating radioactive decay into charging and coagulation of multicomponent radioactive aerosols
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Incorporating radioactive decay into charging and coagulation of multicomponent radioactive aerosols

机译:将放射性衰减掺入多组分放射性气溶胶的充电和凝固中

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AbstractCompositional changes by the decay of radionuclides in radioactive aerosols can influence their charging state, coagulation frequency and size distribution throughout their atmospheric lifetime. The importance of such effects is unknown as they have not been considered in microphysical and global radioactivity transport studies to date. We explore the effects of compositional changes on the charging efficiency and coagulation rates of aerosols using a set of kinetic equations that couple all relevant processes (decay, charging and coagulation) and their evolution over time. Compared to a coupled aggregation-tracer model for the prediction of the radioactive composition of particulates undergoing coagulation, our kinetic approach can provide similar results using much less central processing unit time. Together with other considerations, our approach is computational efficient enough to allow implementation in 3D atmospheric transport models. The decay of radionuclides and the production of decay products within radioactive aerosols may significantly affect the aerosol charging rates, and either hinder or promote the coagulation of multicomponent radioactive aerosols. These results suggest that radiological phenomena occurring within radioactive aerosols, as well as subsequent effects on aerosol microphysics, should be considered in regional and global models to more accurately predict radioactivity transport in the atmosphere in case of a nuclear plant accident.Highlights?Due to radioactive decay, radioactive aerosols are inherently multicomponent.?Charging and coagulation of radioactive aerosols are affected by aerosol composition.?Coupled kinetic models of charging, coagulation, and radioactive decay are developed.]]>
机译:<![cdata [ 抽象 放射性气溶胶中放射性核素衰减的组成变化可以影响它们在整个大气寿命中的充电状态,凝固频率和尺寸分布。这些效果的重要性是未知的,因为它们迄今未被考虑在微药物和全球放射性传输研究中。我们探讨了组成变化对气溶胶的充电效率和凝固率的影响,这些动力学方程耦合所有相关过程(腐烂,充电和凝固)及其随着时间的推移。与耦合聚合 - 示踪模型相比,用于预测经历凝血的颗粒的放射性组成,我们的动力学方法可以使用更少的中央处理单元时间提供类似的结果。我们与其他考虑因素一起,我们的方法是计算有效,足以允许在3D大气传输模型中实现。放射性核素的衰减和放射性气溶胶中的腐烂产品的产生可能会显着影响气溶胶充电率,并且妨碍或促进多组分放射性气溶胶的凝血。这些结果表明放射性气溶胶中发生的放射性现象以及随后对气溶胶微生物的影响,应在区域和全球模型中考虑在核植物事故的情况下更准确地预测大气中的放射性运输。 亮点 充电和凝固放射性气溶胶受到气溶胶的影响位置。 耦合的充电,凝血和放射性衰减的动力学模型。 ]]>

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