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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Isotopic enrichment of nitrous oxide ((NNO)-N-15-N-14, (NNO)-N-14-N-15, (NNO)-N-14-N-14-O-18) in the stratosphere and in the laboratory
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Isotopic enrichment of nitrous oxide ((NNO)-N-15-N-14, (NNO)-N-14-N-15, (NNO)-N-14-N-14-O-18) in the stratosphere and in the laboratory

机译:平流层中一氧化二氮的同位素富集((NNO)-N-15-N-14,(NNO)-N-14-N-15,(NNO)-N-14-N-14-O-18)和在实验室里

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摘要

Nitrous oxide (N2O) extracted from stratospheric whole air samples has been analyzed for its N-15 and O-18 isotopic composition, and strong enrichments in the heavy isotopes are observed concomitant with decreasing N2O mixing ratio. Notably, the N-15 enrichment is strongly different at the two nonequivalent positions in the molecule. Laboratory broadband photolysis experiments at wavelengths representative for the stratosphere confirm that photolysis is the prime cause for the observed fractionation in the stratosphere. However, the in situ stratospheric fractionation constants are significantly reduced compared to the laboratory data, reflecting the importance of dynamic processes. In addition, small but significant variations in the ratio of the two N-15 fractionation constants indicate the influence of additional chemical processes like the oxidation of N2O by O(D-1). [References: 20]
机译:分析了从平流层全空气样品中提取的一氧化二氮(N2O)的N-15和O-18同位素组成,并且随着N2O混合比的降低,观察到重同位素中的强富集。值得注意的是,N-15富集在分子的两个非等价位置上有很大不同。在代表平流层的波长下进行的实验室宽带光解实验证实,光解是平流层中观察到的分级分离的主要原因。但是,与实验室数据相比,原位平流层分馏常数明显降低,反映了动态过程的重要性。此外,两个N-15分馏常数之比的微小但显着变化表明其他化学过程的影响,例如O(D-1)氧化N2O。 [参考:20]

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