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Impacts of coagulation on the appearance time method for new particle growth rate evaluation and their corrections

机译:凝血对新粒子生长速率评估的外观时间方法的影响及其矫正

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The growth rate of atmospheric new particles is a key parameter that determines their survival probability of becoming cloud condensation nuclei and hence their impact on the climate. There have been several methods to estimate the new particle growth rate. However, due to the impact of coagulation and measurement uncertainties, it is still challenging to estimate the initial growth rate of new particles, especially in polluted environments with high background aerosol concentrations. In this study, we explore the influences of coagulation on the appearance time method to estimate the growth rate of sub-3?nm particles. The principle of the appearance time method and the impacts of coagulation on the retrieved growth rate are clarified via derivations. New formulae in both discrete and continuous spaces are proposed to correct for the impacts of coagulation. Aerosol dynamic models are used to test the new formulae. New particle formation in urban Beijing is used to illustrate the importance of considering the impacts of coagulation on the sub-3?nm particle growth rate and its calculation. We show that the conventional appearance time method needs to be corrected when the impacts of coagulation sink, coagulation source, and particle coagulation growth are non-negligible compared to the condensation growth. Under the simulation conditions with a constant concentration of non-volatile vapors, the corrected growth rate agrees with the theoretical growth rates. However, the uncorrected parameters, e.g., vapor evaporation and the variation in vapor concentration, may impact the growth rate obtained with the appearance time method. Under the simulation conditions with a varying vapor concentration, the average bias in the corrected 1.5–3?nm particle growth rate ranges from 6?%–44?%, and the maximum bias in the size-dependent growth rate is 150?%. During the test new particle formation event in urban Beijing, the corrected condensation growth rate of sub-3?nm particles was in accordance with the growth rate contributed by sulfuric acid condensation, whereas the conventional appearance time method overestimated the condensation growth rate of 1.5?nm particles by 80?%.
机译:大气新粒子的生长速率是一个关键参数,决定其生存概率成为云凝结核的生存概率,从而影响其对气候的影响。有几种方法来估计新的粒子生长速率。然而,由于凝固和测量不确定性的影响,估计新颗粒的初始生长速率仍然挑战,特别是在具有高背景气溶胶浓度的污染环境中。在这项研究中,我们探讨了凝血对外观时间方法的影响,以估计亚3α颗粒的生长速率。通过衍生,阐明了外观时间方法的原理和凝血对所检出的生长速率的影响。提出了离散和连续空间的新公式,以纠正凝血的影响。气溶胶动态模型用于测试新公式。北京城市新粒子形成用于说明考虑凝血对亚3?NM颗粒生长速率及其计算的影响的重要性。我们表明,与凝结生长相比,需要纠正常规的外观时间方法,当凝固槽,凝固源和颗粒凝固生长的影响是不可忽略的。在具有恒定浓度的非挥发性蒸气浓度的模拟条件下,校正的生长速度同意理论增长率。然而,未矫正的参数,例如蒸汽蒸发和蒸气浓度的变化可能会影响用外观时间方法获得的生长速率。在具有不同蒸气浓度的模拟条件下,校正的1.5-3Ω·NM颗粒生长速率的平均偏压范围为6μm-44μm,尺寸依赖性生长速率的最大偏差为150μm。在城市北京中的测试新粒子形成事件期间,较矫正的亚3颗粒的凝结生长速率符合硫酸缩合的增长率,而传统的外观时间方法高估1.5的冷凝生长速率NM颗粒80?%。

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