首页> 外文期刊>The Astrophysical Journal. Supplement Series >AN EXPERIMENTAL INVESTIGATION OF THE DECOMPOSITION OF CARBON MONOXIDE AND FORMATION ROUTES TO CARBON DIOXIDE IN INTERSTELLAR ICES
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AN EXPERIMENTAL INVESTIGATION OF THE DECOMPOSITION OF CARBON MONOXIDE AND FORMATION ROUTES TO CARBON DIOXIDE IN INTERSTELLAR ICES

机译:星际冰中一氧化碳分解及生成路线向二氧化碳的实验研究

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The formation of carbon dioxide from the processing of carbon monoxide (CO) and molecular oxygen (18O2) via radiolysis is studied within the context of its formation in interstellar ices in quiescent clouds. With the help of isotopic labeling, we were able to “trace” the atoms and providemechanistical information on howcarbon monoxide is decomposed, and carbon dioxide is formed in interstellar ices. Here, we quantify the production of 18O3, O18O2, 18OO18O, C18O, CO2, 18OCO, and C18O2. In contrast to experiments using ultraviolet irradiation, we find that upon exposure to energetic electrons, isolated carbon monoxide molecules are able to undergo unimolecular decomposition to give suprathermal carbon (C) and oxygen (O) atoms. Molecular oxygen decomposes to two oxygen atoms. The free oxygen atoms can react with carbon monoxide via addition to form the carbon dioxide isotopomers as observed experimentally. This mechanism to form carbon dioxide is distinctly different to the one observed in pure carbon monoxide ices where electronically excited carbon monoxide reacts with a neighboring carbon monoxide molecule to form solely carbon dioxide and a carbon atom.
机译:在静态云中星际冰的形成过程中,研究了通过放射分解处理一氧化碳(CO)和分子氧(18O2)形成二氧化碳的过程。借助同位素标记,我们能够“追踪”原子并提供有关一氧化碳如何分解以及星际冰中二氧化碳形成的机理信息。在这里,我们量化了18O3,O18O2、18OO18O,C18O,CO2、18OCO和C18O2的产量。与使用紫外线照射的实验相反,我们发现在暴露于高能电子时,孤立的一氧化碳分子能够经历单分子分解,从而产生超热碳(C)和氧(O)原子。分子氧分解成两个氧原子。游离氧原子可通过加成与一氧化碳反应形成二氧化碳异位异构体,如实验观察到的那样。这种形成二氧化碳的机理与在纯一氧化碳冰中观察到的机理明显不同,在纯冰中,电子激发的一氧化碳与相邻的一氧化碳分子反应仅形成二氧化碳和碳原子。

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