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The neutral photochemistry of nitriles, amines and imines in the atmosphere of Titan

机译:泰坦大气中腈,胺和亚胺的中性光化学

摘要

The photochemistry of N2 and CH4 in the atmosphere of Titan leads to a very rich chemistry which is not well understood. The aim of our study is to improve our understanding of the production of nitrogen compounds and to predict the abundances of those with high molar mass with better accuracy. We have made a careful investigation of the neutral nitrogen photochemistry to improve current chemical schemes including the most abundant species and the most efficient reactions. We also studied the propagation of uncertainties on rate constants in our model and determined the key reactions from a global sensitivity analysis. Our photochemical model contains 124 species, 60 of which are nitrogen containing compounds, and 1141 reactions. Our results are in reasonable agreement with Cassini/INMS data in the higher atmosphere but our model overestimates the mole fractions of several nitriles in the lower stratosphere. New species such as CH3C3N and C3H7CN could be relatively abundant in Titan's atmosphere. Uncertainties on some nitrogen compounds are important and further studies of the key reactions that we have identified are needed to improve the predictivity of photochemical models. Meridional transport is expected to be an efficient process to govern the abundances of several nitriles in the lower stratosphere.
机译:泰坦大气中的N2和CH4的光化学导致非常丰富的化学反应,人们对此尚不了解。我们研究的目的是增进我们对氮化合物生产的了解,并以更好的准确性预测高摩尔质量氮化合物的丰度。我们对中性氮光化学进行了仔细的研究,以改善当前的化学方案,包括种类最多,反应最有效的方案。我们还研究了模型中速率常数不确定性的传播,并通过全局敏感性分析确定了关键反应。我们的光化学模型包含124种,其中60种是含氮化合物,以及1141种反应。我们的结果与较高大气层中的Cassini / INMS数据合理地吻合,但我们的模型高估了低平流层中几个腈的摩尔分数。在泰坦大气中,CH3C3N和C3H7CN等新物种可能相对丰富。一些氮化合物的不确定性很重要,需要进一步研究我们已经确定的关键反应,以提高光化学模型的可预测性。经线运输有望成为控制低平流层中几个腈含量的有效方法。

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