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首页> 外文期刊>The Astrophysical journal >Formation of Formaldehyde by the Tunneling Reaction of H with Solid CO at 10 K Revisited
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Formation of Formaldehyde by the Tunneling Reaction of H with Solid CO at 10 K Revisited

机译:再谈10 K下H与固体CO的隧穿反应形成甲醛。

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摘要

The reaction of H atoms with the solid CO thin film was reinvestigated in the temperature region of 10-25 K. H2CO was found to be only the reaction product, and no other products such as CH3OH were detected. This indicates that the tunneling reactions of H with H2CO to form CH3OH are even slower than the slow reaction of H with CO to form H2CO. The CH3OH found in the envelopes of the dark clouds may have other sources for their production in addition to reactions 2H + H2CO → CH3OH, e.g., reaction of O(1D) with CH4 trapped on the dust grains to form CH3OH. The yield of H2CO from the reaction H with solid CO showed a steep increase with a decrease of temperature from 25 to 10 K. This indicates that the dark clouds whose temperature is kept at as low as 10 K are the favorable place for the chemical evolution via tunneling reactions. The erosion of the solid CO film was not observed with the spray of the H atoms over the CO solid film in the temperature range of 10-25 K. This finding suggests that the contribution of the highly exothermic reaction 2H + H2 to desorption of the grain mantle may not be as large as thought before.
机译:在10-25 K的温度范围内,对H原子与固态CO薄膜的反应进行了重新研究。发现H2CO只是反应产物,没有检测到其他产物,例如CH3OH。这表明H与H2CO形成CH3OH的隧穿反应甚至比H与CO形成H2CO的缓慢反应更慢。除2H + H2CO→CH3OH反应外,例如在乌云包层中发现的CH3OH可能还有其他生产来源,例如O(1D)与捕获在尘埃颗粒上的CH4反应形成CH3OH。反应H与固体CO的反应生成的H2CO的产率急剧增加,温度从25 K降低到10K。这表明温度保持在10 K低的黑云是化学演化的有利场所。通过隧道反应。在10-25 K的温度范围内,未观察到H原子在CO固体膜上喷出的固体CO膜的腐蚀现象。这一发现表明,高放热反应2H + H2对HCO脱附的贡献。谷物地幔可能没有以前想象的那么大。

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