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Complex organic matter in Titan's atmospheric aerosols from in situ pyrolysis and analysis

机译:原位热解和分析得出的泰坦大气气溶胶中的复杂有机物

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Aerosols in Titan's atmosphere play an important role in determining its thermal structure(1-3). They also serve as sinks for organic vapours(4) and can act as condensation nuclei for the formation of clouds(5,6), where the condensation efficiency will depend on the chemical composition of the aerosols(5,7). So far, however, no direct information has been available on the chemical composition of these particles. Here we report an in situ chemical analysis of Titan's aerosols by pyrolysis at 600 degrees C. Ammonia (NH3) and hydrogen cyanide (HCN) have been identified as the main pyrolysis products. This clearly shows that the aerosol particles include a solid organic refractory core. NH3 and HCN are gaseous chemical fingerprints of the complex organics that constitute this core, and their presence demonstrates that carbon and nitrogen are in the aerosols.
机译:土卫六大气中的气溶胶在确定其热结构方面起着重要作用(1-3)。它们还充当有机蒸气的汇(4),并可以充当形成云的凝结核(5,6),其中凝结效率将取决于浮质的化学成分(5,7)。然而,到目前为止,还没有关于这些颗粒的化学组成的直接信息。在这里,我们报告在600摄氏度下通过热解对泰坦气溶胶进行的原位化学分析。氨(NH3)和氰化氢(HCN)已被确定为主要热解产物。这清楚地表明,气溶胶颗粒包括固体有机耐火芯。 NH 3和HCN是构成该核心的复杂有机物的气态化学指纹,它们的存在表明碳和氮存在于气溶胶中。

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