论文标题

泰坦电离层中的相互作用灰尘 - 尘埃落体:气溶胶侵蚀的实验模拟

Interaction dust-plasma in Titan's ionosphere: an experimental simulation of aerosols erosion

论文作者

Chatain, Audrey, Carrasco, Nathalie, Ruscassier, Nathalie, Gautier, Thomas, Vettier, Ludovic, Guaitella, Olivier

论文摘要

在泰坦的橙色薄雾中积累的有机气溶胶在其电离层中开始形成。大气的上部是高反应性的,复杂的离子化学反应在1200至900 km的高度上进行。电离层是甲烷和氢的百分之几的氮血浆。来自甲烷的碳可以形成具有长的有机链的大分子,最后导致有机气溶胶。另一方面,我们怀疑氢和质子化离子对气溶胶具有不同的侵蚀作用。在这里,我们通过实验研究了氢和质子化物种对有机气溶胶的影响。在95%N2和5%CH4的CCP RF血浆放电中形成了泰坦气溶胶的类似物。此后,气溶胶暴露于99%N2和1%H2的DC血浆中。通过扫描电子显微镜和原位红外传输光谱分析样品。比较了两种颗粒技术 - kbr压力颗粒和薄金属网格 - 确认所见的修改不是由于用于制造颗粒的材料所致。我们观察到,直径约500 nm的球形气溶胶在N2-H2血浆暴露下被侵蚀,其表面的孔形成〜10 nm。气溶胶通过等离子体从颗粒中除去。与全球硝酸晶体相比,红外光谱显示出等异依氏和/或碳二酰亚胺的消失速度更快。 β-不饱和硝酸盐和/或氰胺观察到了相反的效果。与胺和C-H键相比,C = C = N的双键受到更大的影响。 N-H和C-H吸收带保持强度相似,其形状不变。因此,看来碳和氢在泰坦的电离层中起着相反的作用:甲烷的碳导致有机生长,而氢和质子化物种则侵蚀了气溶胶,并优先与不饱和化学功能反应。

Organic aerosols accumulated in Titan's orange haze start forming in its ionosphere. This upper part of the atmosphere is highly reactive and complex ion chemistry takes place at altitudes from 1200 to 900 km. The ionosphere is a nitrogen plasma with a few percent of methane and hydrogen. Carbon from methane enables the formation of macromolecules with long organic chains, finally leading to the organic aerosols. On the other hand, we suspect that hydrogen and the protonated ions have a different erosive effect on the aerosols. Here we experimentally studied the effect of hydrogen and protonated species on organic aerosols. Analogues of Titan's aerosols were formed in a CCP RF plasma discharge in 95% N2 and 5% CH4. Thereafter, the aerosols were exposed to a DC plasma in 99% N2 and 1% H2. Samples were analysed by scanning electron microscopy and in situ infrared transmission spectroscopy. Two pellet techniques - KBr pressed pellets and thin metallic grids - were compared to confirm that modifications seen are not due to the material used to make the pellet. We observed that the spherical aerosols of ~500 nm in diameter were eroded under N2-H2 plasma exposure, with the formation of holes of ~10 nm at their surface. Aerosols were globally removed from the pellet by the plasma. IR spectra showed a faster disappearance of isonitriles and/or carbo-diimides compared to the global band of nitriles. The opposite effect was seen with beta-unsaturated nitriles and/or cyanamides. Double bonds as C=C and C=N were more affected than amines and C-H bonds. N-H and C-H absorption bands kept a similar ratio in intensity and their shape did not vary. Therefore, it seems that carbon and hydrogen play opposite roles in Titan's ionosphere: the carbon from methane lead to organic growth while hydrogen and protonated species erode the aerosols and react preferentially with unsaturated chemical functions.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源