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Atmospheric prebiotic chemistry and organic hazes

机译:大气益生元化学和有机雾度

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Earth's atmospheric composition at the time of the origin of life is not known, but it has often been suggested that chemical transformation of reactive species in the atmosphere was a significant source of prebiotic organic molecules. Experimental and theoretical studies over the past half century have shown that atmospheric synthesis can yield molecules such as amino acids and nucleobases, but these processes are very sensitive to gas composition and energy source. Abiotic synthesis of organic molecules is more productive in reduced atmospheres, yet the primitive Earth may not have been as reducing as earlier workers assumed, and recent research has reflected this shift in thinking. This work provides a survey of the range of chemical products that can be produced given a set of atmospheric conditions, with a particular focus on recent reports. Intertwined with the discussion of atmospheric synthesis is the consideration of an organic haze layer, which has been suggested as a possible ultraviolet shield on the anoxic early Earth. Since such a haze layer - if formed - would serve as a reservoir for organic molecules, the chemical composition of the aerosol should be closely examined. The results highlighted here show that a variety of products can be formed in mildly reducing or even neutral atmospheres, demonstrating that contributions of atmospheric synthesis to the organic inventory on early Earth should not be discounted. This review intends to bridge current knowledge of the range of possible atmospheric conditions in the prebiotic environment and pathways for synthesis under such conditions by examining the possible products of organic chemistry in the early atmosphere.
机译:生命起源时地球的大气成分尚不清楚,但经常有人提出,大气中反应性物种的化学转化是益生元有机分子的重要来源。过去半个世纪的实验和理论研究表明,大气合成可以产生氨基酸和核碱基等分子,但是这些过程对气体组成和能源非常敏感。在减少的大气层中,有机分子的非生物合成效率更高,但原始地球的还原性可能不如早期工作人员所设想的那样,并且最近的研究已反映出这种思维上的转变。这项工作提供了对在一定大气条件下可以生产的化学产品范围的调查,特别关注最近的报告。与大气合成的讨论交织在一起的是有机雾层的考虑,有机雾层被认为是缺氧早期地球上可能的紫外线屏蔽层。由于这样的雾化层(如果形成)将充当有机分子的储存库,因此应仔细检查气雾剂的化学成分。此处突出显示的结果表明,在轻度减少甚至中性的大气中可以形成多种产品,这表明大气合成对早期地球有机物的贡献不容小discount。这篇综述旨在通过检查早期大气中有机化学的可能产物,来桥接当前对益生元环境中可能的大气条件范围以及在此类条件下的合成途径的认识。

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