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A light-driven burst of hydroxyl radicals dominates oxidation chemistry in newly activated cloud droplets

机译:光驱动的羟基自由基爆发控制了新活化的云滴中的氧化化学反应

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Aerosol particles and their interactions with clouds are one of the most uncertain aspects of the climate system. Aerosol processing by clouds contributes to this uncertainty, altering size distributions, chemical composition, and radiative properties. Many changes are limited by the availability of hydroxyl radicals in the droplets. We suggest an unrecognized potentially substantial source of OH formation in cloud droplets. During the first few minutes following cloud droplet formation, the material in aerosols produces a near-UV light–dependent burst of hydroxyl radicals, resulting in concentrations of 0.1 to 3.5 micromolar aqueous OH ([OH]subaq/sub). The source of this burst is previously unrecognized chemistry between iron(II) and peracids. The contribution of the “OH burst” to total OH in droplets varies widely, but it ranges up to a factor of 5 larger than previously known sources. Thus, this new process will substantially enhance the impact of clouds on aerosol properties.
机译:气溶胶颗粒及其与云的相互作用是气候系统最不确定的方面之一。云的气溶胶处理导致了这种不确定性,改变了尺寸分布,化学成分和辐射特性。许多变化受到液滴中羟基自由基可用性的限制。我们建议在云滴中发现无法识别的潜在大量OH来源。在云滴形成后的最初几分钟内,气溶胶中的物质会产生近紫外线依赖的羟基自由基爆发,从而产生0.1至3.5微摩尔的OH([OH] )水溶液浓度。 。爆炸的原因是以前无法识别的铁(II)和过酸之间的化学反应。 “ OH猝发”对液滴中总OH的贡献变化很大,但范围比以前已知的来源大5倍。因此,这一新过程将大大增强云对气溶胶特性的影响。

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