Kim Yong-Ha, Yiacoumi Sotira, Tsouris Costas
Georgia Institute of Technology, Atlanta, GA 30332-0373, United States.
Georgia Institute of Technology, Atlanta, GA 30332-0373, United States.
J Environ Radioact. 2015 May;143:91-99. doi: 10.1016/j.jenvrad.2015.02.017. Epub 2015 Mar 9.
Radioactivity can induce charge accumulation on radioactive particles. However, electrostatic interactions caused by radioactivity are typically neglected in transport modeling of radioactive plumes because it is assumed that ionizing radiation leads to charge neutralization. The assumption that electrostatic interactions caused by radioactivity are negligible is evaluated here by examining charge accumulation and neutralization on particles containing radionuclides in open air. A charge-balance model is employed to predict charge accumulation on radioactive particles. It is shown that particles containing short-lived radionuclides can be charged with multiple elementary charges through radioactive decay. The presence of radioactive particles can significantly modify the particle charge distribution in open air and yield an asymmetric bimodal charge distribution, suggesting that strong electrostatic particle interactions may occur during short- and long-range transport of radioactive particles. Possible effects of transported radioactive particles on electrical properties of the local atmosphere are reported. The study offers insight into transport characteristics of airborne radionuclides. Results are useful in atmospheric transport modeling of radioactive plumes.
放射性可在放射性粒子上诱导电荷积累。然而,在放射性羽流的传输模型中,通常忽略由放射性引起的静电相互作用,因为假定电离辐射会导致电荷中和。本文通过研究露天环境中含有放射性核素的粒子上的电荷积累和中和情况,对放射性引起的静电相互作用可忽略不计这一假设进行了评估。采用电荷平衡模型来预测放射性粒子上的电荷积累。结果表明,含有短寿命放射性核素的粒子可通过放射性衰变带上多个基本电荷。放射性粒子的存在会显著改变露天环境中的粒子电荷分布,并产生不对称的双峰电荷分布,这表明在放射性粒子的短程和长程传输过程中可能会发生强烈的静电粒子相互作用。文中还报道了传输的放射性粒子对当地大气电学性质可能产生的影响。该研究为空气中放射性核素的传输特性提供了见解。研究结果对放射性羽流的大气传输模型具有参考价值。