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首页> 外文期刊>Rapid Communications in Mass Spectrometry: RCM >Isotope analysis of hydrocarbons: trapping, recovering and archiving hydrocarbons and halocarbons separated from ambient air
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Isotope analysis of hydrocarbons: trapping, recovering and archiving hydrocarbons and halocarbons separated from ambient air

机译:碳氢化合物的同位素分析:捕集,回收和存档与环境空气分离的碳氢化合物和卤化碳

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摘要

It is argued that isotope analysis of atmospheric non-methane hydrocarbons (NMHCs) and, in particular, the analysis of the deuterium/hydrogen (D/H) ratio is valuable because the dominant self-cleansing property of the troposphere is based on the OH radical which removes, e.g., CH4 and other alkanes by H-atom abstraction, which induces large kinetic isotope effects. The major obstacle in applying D/H isotope analysis to atmospheric NMHCs is not only the low abundance of D itself but, in particular, the low concentrations of NMHCs in the parts per trillion range. We show how a selection of NMHCs can be quantitatively separated from 300 L air samples together with CO2 as carrier gas matrix, by using high efficiency cryogenic traps. After diluting the extracted NMHC mixtures with hydrocarbon free air, and determining the mixing ratios, good agreement with original whole air sample analysis exists for alkanes and several halocarbons. For unsaturated hydrocarbons and some other halocarbons the extraction and recovery yield under the given conditions fell considerably, as a function of boiling point. Furthermore, the mixture of NMHCs in the CO2 matrix is proven to remain unchanged over several years when conveniently stored in glass ampoules. The 'extracts' or 'concentrates' of condensables extracted from larger air samples will enable the D/H isotope analysis of ultra trace gases in the atmosphere. Copyright (C) 2005 John Wiley Sons, Ltd.
机译:有人认为,大气非甲烷碳氢化合物(NMHC)的同位素分析,尤其是氘/氢(D / H)比的分析是有价值的,因为对流层的主要自清洁特性是基于OH通过H原子抽象除去CH4和其他烷烃的自由基,从而引起大的动力学同位素效应。将D / H同位素分析应用于大气NMHC的主要障碍不仅是D本身的丰度低,而且尤其是每万亿分之几的NMHC浓度低。我们展示了如何通过使用高效的低温捕集阱,从300 L的空气样本中将选择的NMHC与CO2作为载气基质进行定量分离。用不含烃的空气稀释提取的NMHC混合物并确定混合比后,对于烷烃和几种卤代烃,与原始的整个空气样品分析存在良好的一致性。对于不饱和烃和某些其他卤代烃,在给定条件下的萃取和回收率随沸点的变化而大大降低。此外,事实证明,当方便地储存在玻璃安瓿瓶中时,CO2基质中NMH​​C的混合物会保持几年不变。从较大的空气样本中提取的可冷凝物的“提取物”或“浓缩物”将使大气中超痕量气体的D / H同位素分析成为可能。版权所有(C)2005 John Wiley Sons,Ltd.

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