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Formation of NH3 and CH2NH in Titan's upper atmosphere

机译:泰坦高层大气中NH3和CH2NH的形成

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The large abundance of NH3 in Titan's upper atmosphere is a consequence of coupled ion and neutral chemistry. The density of NH3 is inferred from the measured abundance of NH_4~+. NH3 is produced primarily through reaction of NH2 with H2CN, a process neglected in previous models. NH2 is produced by several reactions including electron recombination of CH2NH_2~+. The density of CH2NH_2~+ is closely linked to the density of CH2NH through proton exchange reactions and recombination. CH2NH is produced by reaction of N(~2D) and NH with ambient hydrocarbons. Thus, production of NH3 is the result of a chain of reactions involving non-nitrile functional groups and the large density of NH3 implies large densities for these associated molecules. This suggests that amine and imine functional groups may be incorporated as well in other, more complex organic molecules.
机译:泰坦高层大气中的大量NH3是耦合离子和中性化学的结果。从测量的NH_4〜+的丰度推断NH 3的密度。 NH 3主要通过NH 2与H2CN的反应产生,在以前的模型中被忽略的过程。 NH 2由几种反应产生,包括CH 2 NH_2〜+的电子复合。 CH2NH_2〜+的密度与通过质子交换反应和重组的CH 2 N的密度紧密相关。 CH2NH通过N(〜2D)和NH与环境烃的反应产生。因此,NH 3的产生是涉及非腈官能团的反应链的结果,并且NH 3的大密度暗示了这些相关分子的大密度。这表明胺和亚胺官能团也可以在其他更复杂的有机分子中掺入。

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