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Stable sulphate clusters as a source of new atmospheric particles

机译:稳定的硫酸盐团簇是新的大气颗粒的来源

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The formation of new atmospheric particles with diameters of 3-10nm has been observed at a variety of altitudes and locations. Such aerosol particles have the potential to grow into cloud condensation nuclei, thus affecting cloud formation as well as the global radiation budget. In some cases, the observed formation rates of new particles have been adequately explained by binary nucleation, involving water and sulphuric acid, but in certain locations—particularly those within the marine boundary layer and at continental sites—observed ambient nucleation rates exceed those predicted by the binary scheme. In these locations, ambient sulphuric acid (H_2SO_4) levels are typically lower than required for binary nucleation, but are sufficient for ternary nucleation (sulphuric acid-ammonia-water). Here we present results from an aerosol dynamics model with a ternary nucleation scheme which indicate that nucleation in the troposphere should be ubiquitous, and yield a reservoir of thermodynamically stable clusters 1-3 nm in size. We suggest that the growth of these clusters to a detectable size ( > 3nm particle diameter) is restricted by the availability of condensable vapour. Observations of atmospheric particle formation and growth from a continental and a coastal site support this hypothesis, indicating that a growth process including ternary nucleation is likely to be responsible for the formation of cloud condensation nuclei.
机译:在各种高度和位置都可以观察到直径为3-10nm的新的大气颗粒的形成。此类气溶胶颗粒有可能长成云凝结核,从而影响云的形成以及全球辐射预算。在某些情况下,观测到的新颗粒形成速率已通过涉及水和硫酸的二元成核得到了充分解释,但在某些位置(尤其是在海洋边界层内和大陆位置的那些位置),观测到的环境成核速率超过了二进制方案。在这些位置,环境硫酸(H_2SO_4)的水平通常低于二元成核所需的水平,但足以实现三元成核(硫酸-氨水)。在这里,我们提出了具有三元成核方案的气溶胶动力学模型的结果,该模型表明对流层中的成核应无处不在,并产生大小为1-3 nm的热力学稳定簇的储集层。我们建议这些簇的生长到可检测的大小(> 3nm的粒径)受到可冷凝蒸气的可用性的限制。从大陆和沿海站点形成的大气颗粒形成和生长的观测结果支持了这一假说,表明包括三元成核的生长过程很可能是造成云凝结核形成的原因。

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