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Mineral dust photochemistry induces nucleation events in the presence of SO2

机译:矿物粉尘光化学在SO2存在下诱导成核事件

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摘要

Large quantities of mineral dust particles are frequently ejected into the atmosphere through the action of wind. The surface of dust particles acts as a sink for many gases, such as sulfur dioxide. It is well known that under most conditions, sulfur dioxide reacts on dust particle surfaces, leading to the production of sulfate ions. In this report, for specific atmospheric conditions, we provide evidence for an alternate pathway in which a series of reactions under solar UV light produces first gaseous sulfuric acid as an intermediate product before surface-bound sulfate. Metal oxides present in mineral dust act as atmospheric photocatalysts promoting the formation of gaseous OH radicals, which initiate the conversion of SO2 to H2SO4 in the vicinity of dust particles. Under low dust conditions, this process may lead to nucleation events in the atmosphere. The laboratory findings are supported by recent field observations near Beijing, China, and Lyon, France.
机译:经常通过风的作用将大量的矿物尘埃颗粒喷入大气。灰尘颗粒的表面充当许多气体(例如二氧化硫)的吸收器。众所周知,在大多数情况下,二氧化硫在尘埃颗粒表面反应,导致产生硫酸根离子。在此报告中,对于特定的大气条件,我们提供了另一种途径的证据,在该途径中,在太阳紫外线下进行的一系列反应在生成表面结合的硫酸盐之前,先生成气态硫酸作为中间产物。矿物粉尘中存在的金属氧化物充当大气光催化剂,促进气态OH自由基的形成,从而引发粉尘颗粒附近的SO2转化为H2SO4。在低尘条件下,此过程可能导致大气中发生成核现象。实验室的发现得到了中国北京和法国里昂附近地区最近的现场观察的支持。

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