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Extreme deuterium enrichment in stratospheric hydrogen and the global atmospheric budget of H_2

机译:平流层中氢的极端氘富集和H_2的全球大气预算

摘要

Molecular hydrogen (H_2) is the second most abundant trace gas in the atmosphere after methane (CH_4). In the troposphere, the D/H ratio of H_2 is enriched by 120‰ relative to the world's oceans. This cannot be explained by the sources of H_2 for which the D/H ratio has been measured to date (for example, fossil fuels and biomass burning). But the isotopic composition of H_2 from its single largest source—the photochemical oxidation of methane—has yet to be determined. Here we show that the D/H ratio of stratospheric H2 develops enrichments greater than 440‰, the most extreme D/H enrichment observed in a terrestrial material. We estimate the D/H ratio of H_2 produced from CH_4 in the stratosphere, where production is isolated from the influences of non-photochemical sources and sinks, showing that the chain of reactions producing H_2 from CH_4 concentrates D in the product H_2. This enrichment, which we estimate is similar on a global average in the troposphere, contributes substantially to the D/H ratio of tropospheric H_2.
机译:分子氢(H_2)是大气中仅次于甲烷(CH_4)的第二丰富的痕量气体。在对流层中,H_2的D / H比相对于世界海洋增加了120‰。这不能用迄今为止已测量D / H比的H_2来源来解释(例如,化石燃料和生物质燃烧)。但是,H_2的最大同位素来源-甲烷的光化学氧化-尚待确定。在这里,我们表明平流层H2的D / H富集度大于440‰,这是在陆地物质中观察到的最极端的D / H富集。我们估计了平流层中CH_4产生的H_2的D / H比,在平流层中,生产不受非光化学源和汇的影响而分离,表明从CH_4产生H_2的反应链将D浓缩在产物H_2中。我们估计这种富集在对流层的全球平均水平上是相似的,它对对流层H_2的D / H比有很大贡献。

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