Coll P, Coscia D, Gazeau M C, de Vanssay E, Guillemin J C, Raulin F
LISA, URA-CNRS, Universites Paris, France.
Adv Space Res. 1995;16(2):93-103. doi: 10.1016/0273-1177(95)00197-m.
Many experiments have already been carried out to simulate organic chemistry on Titan, the largest satellite of Saturn. They can provide fruitful information on the nature of minor organic constituents likely to be present in Titan's atmosphere, both in gas and aerosol phases. Indeed, all the organic compounds but one already detected in Titan's atmosphere have been identified in simulation experiments. The exception, C4N2, as well as other compounds expected in Titan from theoretical modeling, such as other N-organics, and polyynes, first of all C6H2, have never been detected in experimental simulation thus far. All these compounds are thermally unstable, and the temperature conditions used during the simulation experiments were not appropriate. We have recently started a new program of simulation experiments with temperature conditions close to that of Titan's environment. It also uses dedicated analytical techniques and procedures compatible with the analysis of organics only stable at low temperatures, as well solid products of low stability in the presence of O2 and H2O. Spark discharge of N2-CH4 gas mixtures was carried out at low temperature in the range 100-150 K. Products were analysed by FTIR, GC and GC-MS techniques. GC-peaks were identified by their mass spectrum, and, in most cases, by comparison of the retention time and mass spectrum with standard ones. We report here the first detection in Titan simulation experiments of C6H2 and HC5N. Their abundance is a few percent relative to C4H2 and HC3N, respectively. Preliminary data on the solid products indicate an elemental composition corresponding to (H11C11N)n. These results open new prospects in the modeling of Titan's haze making.
人们已经进行了许多实验来模拟土星最大的卫星土卫六上的有机化学过程。这些实验能够提供关于土卫六大气中可能存在的微量有机成分性质的丰富信息,这些成分存在于气相和气溶胶相中。事实上,在模拟实验中已经鉴定出土卫六大气中除一种化合物外的所有已检测到的有机化合物。例外的是C4N2,以及理论模型预测土卫六上会存在的其他化合物,如其他含氮有机物和多炔烃,首先是C6H2,到目前为止在实验模拟中从未被检测到。所有这些化合物热稳定性差,模拟实验中使用的温度条件不合适。我们最近启动了一个新的模拟实验项目,其温度条件接近土卫六的环境温度。该项目还使用了专门的分析技术和程序,这些技术和程序适用于分析仅在低温下稳定的有机物,以及在有O2和H2O存在时稳定性较低的固体产物。在100 - 150 K的低温下对N2 - CH4气体混合物进行了火花放电。通过傅里叶变换红外光谱(FTIR)、气相色谱(GC)和气相色谱 - 质谱联用(GC - MS)技术对产物进行了分析。气相色谱峰通过其质谱进行鉴定,在大多数情况下,还通过将保留时间和质谱与标准物进行比较来鉴定。我们在此报告在土卫六模拟实验中首次检测到C6H2和HC5N。它们的丰度相对于C4H2和HC3N分别为百分之几。关于固体产物的初步数据表明其元素组成对应于(H11C11N)n。这些结果为土卫六霾形成的建模开辟了新的前景