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木星平流层中乙烷与乙炔的相对丰度。

The relative abundance of ethane to acetylene in the Jovian stratosphere.

作者信息

Allen M, Yung Y L, Gladstone G R

机构信息

Earth and Space Sciences Division, California Institute of Technology, Pasadena 91109.

出版信息

Icarus. 1992 Dec;100(2):527-33. doi: 10.1016/0019-1035(92)90115-n.

Abstract

The observed ratio of C2H6 to C2H2 in the Jovian stratosphere increases from approximately 55 at 2 mbar to approximately 277 at 12 mbar. In current photochemical models this ratio typically increases between 2 and 12 mbar by a factor of < or = 3. Recent laboratory kinetics studies on the reaction between C2H3 and H2 to form C2H4 suggest an efficient chemical mechanism for hydrogenation of C2H2 to C2H6. Inclusion of this scheme as part of a comprehensive updated model for hydrocarbon photochemistry in the atmosphere of Jupiter provides an explanation of the altitude variation of the C2H6/C2H2 ratio. The sensitivity of these results to uncertainties in the key rate constants at low temperatures is illustrated, identifying needs for additional laboratory measurements. Since the key reaction rate constants decrease with decreasing temperature, the hydrogenation of C2H2 as proposed predicts a qualitatively decreasing trend in the C2H6/C2H2 value with decreasing distance from the Sun. The observed variation between Jupiter and Saturn is consistent with this prediction.

摘要

在木星平流层中观测到的C2H6与C2H2的比率从2毫巴处的约55增加到12毫巴处的约277。在当前的光化学模型中,该比率在2至12毫巴之间通常增加不到或等于3倍。最近关于C2H3与H2反应生成C2H4的实验室动力学研究表明,存在一种将C2H2氢化为C2H6的有效化学机制。将该反应机制纳入木星大气中烃类光化学的综合更新模型,可解释C2H6/C2H2比率随高度的变化。文中阐述了这些结果对低温下关键速率常数不确定性的敏感性,确定了进一步开展实验室测量的必要性。由于关键反应速率常数随温度降低而减小,因此所提出的C2H2氢化反应预示着C2H6/C2H2值将随着与太阳距离的减小而呈定性降低趋势。木星和土星之间观测到的差异与这一预测相符。

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