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A Theoretical Investigation Into The Trapping Of Noble Gases by Clathrates On Titan

机译:包合物在泰坦上捕集稀有气体的理论研究

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In this paper, we use a statistical thermodynamic approach to quantify the efficiency with which clathrates on the surface of Titan trap noble gases. We consider different values of the Ar, Kr, Xe, CH_4, C_2H_6 and N_2 abundances in the gas phase that may be representative of Titan's early atmosphere. We discuss the effect of the various parameters that are chosen to represent the interactions between the guest species and the ice cage in our calculations. We also discuss the results of varying the size of the clathrate cages. We show that the trapping efficiency of clathrates is high enough to significantly decrease the atmospheric concentrations of Xe and, to a lesser extent, of Kr, irrespective of the initial gas phase composition, provided that these clathrates are abundant enough on the surface of Titan. In contrast, we find that Ar is poorly trapped in clathrates and, as a consequence, that the atmospheric abundance of argon should remain almost constant. We conclude that the mechanism of trapping noble gases via clathration can explain the deficiency in primordial Xe and Kr observed in Titan's atmosphere by Huygens, but that this mechanism is not sufficient to explain the deficiency in Ar.
机译:在本文中,我们使用统计热力学方法来量化Titan捕集稀有气体表面包合物的效率。我们考虑了气相中Ar,Kr,Xe,CH_4,C_2H_6和N_2丰度的不同值,这可能是土卫六早期大气的代表。在我们的计算中,我们讨论了用来代表客体和冰笼之间相互作用的各种参数的影响。我们还将讨论改变笼形笼大小的结果。我们表明,包合物的捕集效率足够高,足以显着降低Xe和Kr的大气浓度,而与初始气相组成无关,前提是这些包合物在Titan的表面上足够丰富。相比之下,我们发现Ar很少被包合物捕获,因此,氩气的大气丰度应保持几乎恒定。我们得出的结论是,通过包合物捕获稀有气体的机理可以解释惠更斯在泰坦大气中观察到的原始Xe和Kr的缺乏,但是这种机理不足以解释Ar的缺乏。

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