Navarro-Gonzalez R, Ramirez S I, de la Rosa J G, Coll P, Raulin F
Laboratorio de Quimica de Plasmas y Estudios Planetarios, Instituto de Ciencias Nucleares, Universidad Nacional Autonoma de Mexico, Circuito Exterior, Ciudad Universitaria, Apartado Postal 70-543, Mexico D.F. 04510, Mexico.
Adv Space Res. 2001;27(2):271-82. doi: 10.1016/s0273-1177(01)00057-6.
Although lightning has not been observed in Titan's atmosphere, the presence of methane rain in the troposphere suggests the possibility of electrical activity in the form of corona and/or lightning discharges. Here we examine the chemical effects of these electrical processes on a Titan simulated atmosphere composed of CH4 in N2 at various mixing ratios. Corona discharges were simulated in two different experimental arrays. For the detection of reactive intermediates we used a mass spectrometer to study the main positive ions arising by bombarding low-energy electrons from a hot filament into low-pressure methane. The final stable products, generated by applying a high voltage in a coaxial reactor with either positive or negative polarity, were separated and detected by gas chromatography-Fourier transform infrared spectroscopy and electron impact mass spectrometry (GC-FTIR-MS). Lightning discharges were simulated by a hot and dense plasma generated by a Nd-YAG laser and the final products were separated and detected by GC-FTIR-MS. Corona discharges produce linear and branched hydrocarbons as well as nitriles whereas lightning discharges generate mainly unsaturated hydrocarbons and nitriles. Lightning discharges are about 2 orders of magnitude more efficient in product formation than corona discharges.
尽管在土卫六的大气层中尚未观测到闪电,但对流层中存在甲烷雨表明存在以电晕和/或闪电放电形式出现的电活动的可能性。在此,我们研究了这些电过程对由不同混合比的氮气中的甲烷组成的土卫六模拟大气的化学影响。在两种不同的实验装置中模拟了电晕放电。为了检测反应中间体,我们使用质谱仪研究通过将来自热灯丝的低能电子轰击到低压甲烷中产生的主要正离子。通过在具有正极性或负极性的同轴反应器中施加高电压产生的最终稳定产物,通过气相色谱 - 傅里叶变换红外光谱和电子轰击质谱(GC - FTIR - MS)进行分离和检测。通过钕 - 钇铝石榴石激光产生的热且致密的等离子体模拟闪电放电,最终产物通过GC - FTIR - MS进行分离和检测。电晕放电产生直链和支链烃以及腈,而闪电放电主要产生不饱和烃和腈。闪电放电在产物形成方面比电晕放电效率高约2个数量级。