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二氧化硫二聚体化学作为金星高层大气中多硫的可能来源。

Sulfur monoxide dimer chemistry as a possible source of polysulfur in the upper atmosphere of Venus.

机构信息

University of North Carolina at Chapel Hill, Chapel Hill, NC, USA.

Division of Geological and Planetary Science, California Institute of Technology, Pasadena, CA, USA.

出版信息

Nat Commun. 2021 Jan 8;12(1):175. doi: 10.1038/s41467-020-20451-2.

Abstract

The abundance of SO dimers (SO) in the upper atmosphere of Venus and their implications for the enigmatic ultraviolet absorption has been investigated in several studies over the past few years. However, the photochemistry of sulfur species in the upper atmosphere of Venus is still not well understood and the identity of the missing ultraviolet absorber(s) remains unknown. Here we update an existing photochemical model of Venus' upper atmosphere by including the photochemistry of SO dimers. Although the spectral absorption profile of SO dimers fits the unknown absorber, their abundance is found to be too low for them to contribute significantly to the absorption. It is more likely that their photolysis and/or reaction products could contribute more substantively. Reactions of SO dimers are found to be important sources of SO, and possibly higher order SO species and polysulfur, S. All of these species absorb in the critical ultraviolet region and are expected to be found in both the aerosol and gas phase. indicating that in-situ high resolution aerosol mass spectrometry might be a useful technique for identifying the ultraviolet absorber on Venus.

摘要

在过去的几年中,已有多项研究调查了金星高层大气中 SO 二聚体 (SO) 的丰度及其对神秘紫外吸收的影响。然而,金星高层大气中硫物种的光化学反应仍未得到很好的理解,未知的紫外吸收剂(多个)的身份仍然未知。在这里,我们通过包括 SO 二聚体的光化学反应来更新金星高层大气的现有光化学模型。尽管 SO 二聚体的光谱吸收轮廓与未知的吸收剂吻合,但它们的丰度太低,无法对吸收产生重大影响。它们的光解和/或反应产物更有可能做出实质性的贡献。发现 SO 二聚体的反应是 SO 的重要来源,可能还有更高阶的 SO 物种和多硫 S。所有这些物质都在关键的紫外区域吸收,预计在气溶胶和气相中都能找到。这表明,现场高分辨率气溶胶质谱可能是识别金星上紫外吸收剂的有用技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e3a/7794339/cd21b65fb2e0/41467_2020_20451_Fig1_HTML.jpg

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