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Haze Aerosols in the Atmosphere of Early Earth: Manna from Heaven

机译:早期地球大气中的霾气溶胶:来自天上的甘露

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An organic haze layer in the upper atmosphere of Titan plays a crucial role in the atmospheric composition and climate of that moon. Such a haze layer may also have existed on the early Earth, providing an ultraviolet shield for greenhouse gases needed to warm the planet enough for life to arise and evolve. Despite the implications of such a haze layer, little is known about the organic material produced under early Earth conditions when both CO_2 and CH_4 may have been abundant in the atmosphere. For the first time, we experimentally demonstrate that organic haze can be generated in different CH_4/CO_2 ratios. Here, we show that haze aerosols are able to form at CH_4 mixing ratios of 1,000 ppmv, a level likely to be present on early Earth. In addition, we find that organic hazes will form at C/O ratios as low as 0.6, which is lower than the predicted value of unity. We also show that as the C/O ratio decreases, the organic particles produced are more oxidized and contain biologically labile compounds. After life arose, the haze may thus have provided food for biota.
机译:土卫六上层大气中的有机霾层在该月球的大气成分和气候中起着至关重要的作用。这样的薄雾层也可能已经存在于地球早期,为紫外线辐射提供了温室气体屏蔽所需的紫外线,这些温室气体使地球变暖,足以使生命产生和进化。尽管有这样的薄雾层的影响,但对于早期地球条件下当CO_2和CH_4可能在大气中都富含时产生的有机物质知之甚少。首次,我们通过实验证明了可以以不同的CH_4 / CO_2比生成有机雾度。在这里,我们表明,雾气气溶胶能够以1000 ppmv的CH_4混合比形成,这可能是地球早期存在的水平。此外,我们发现有机雾度会以低至0.6的C / O比率形成,这低于统一的预测值。我们还表明,随着C / O比值的降低,产生的有机颗粒会被更多地氧化,并含有生物不稳定的化合物。在生命出现之后,雾霾可能因此为生物群提供了食物。

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