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Production of organic compounds in plasmas: A comparison among electric sparks, laser-induced plasmas and UV light

机译:等离子体中有机化合物的产生:电火花,激光诱导等离子体和紫外线之间的比较

摘要

In order to study the production of organic compounds in plasmas (and shocks), various mixtures of N2, CH4, and H2, modeling the atmosphere of Titan, were exposed to discrete sparks, laser-induced plasmas (LIP) and ultraviolet light. The yields of HCN and simple hydrocarbons were measured and compared to those calculated from a simple quenched thermodynamic equilibrium model. The agreement between experiment and theory was fair for HCN and C2H2. However, the yields of C2H6 and other hydrocarbons were much higher than those predicted by the model. Our experiments suggest that photolysis by ultraviolet light from the plasma is an important process in the synthesis. This was confirmed by the photolysis of gas samples exposed to the light, but not to the plasma or shock waves. The results of these experiments demonstrate that, in addition to the well-known efficient synthesis of organic compounds in plasmas, the yields of saturated species, e.g., ethane, may be higher than predicted by theory and that LIP provide a convenient and clean way of simulating planetary lightning and impact plasmas in the laboratory.
机译:为了研究等离子体(和冲击)中有机化合物的产生,将模拟泰坦大气的N2,CH4和H2的各种混合物暴露于离散的火花,激光诱导的等离子体(LIP)和紫外线下。测量了HCN和简单烃的收率,并将其与从简单淬火热力学平衡模型计算得出的收率进行了比较。实验和理论之间的协议对于HCN和C2H2是公平的。但是,C2H6和其他碳氢化合物的收率远高于模型预测的收率。我们的实验表明,来自等离子体的紫外线光解是合成中的重要过程。气体样品暴露在光下而不是等离子体或冲击波的光解作用得到了证实。这些实验的结果表明,除了众所周知的等离子体中有机化合物的有效合成方法外,饱和物质(如乙烷)的产率可能比理论上的预测要高,并且LIP提供了一种方便,清洁的方法在实验室中模拟行星闪电和撞击等离子。

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