首页> 外文期刊>Rapid Communications in Mass Spectrometry: RCM >Development of two-dimensional gas chromatography/isotope ratio mass spectrometry for the stable carbon isotopic analysis Of C-2-C-5 non-methane hydrocarbons emitted from biomass burning
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Development of two-dimensional gas chromatography/isotope ratio mass spectrometry for the stable carbon isotopic analysis Of C-2-C-5 non-methane hydrocarbons emitted from biomass burning

机译:二维气相色谱/同位素比质谱技术的发展,用于稳定地分析生物质燃烧产生的C-2-C-5非甲烷碳氢化合物

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A two-dimensional gas chromatography/combustion/isotope ratio mass spectrometry (2D-GC/C/ IRMS) system was developed for stable carbon isotopic measurements of C-2-C-5 non-methane hydrocarbons (NMHCs) in biomass burning smoke. The 2D-GC/C/IRMS system successfully improved the accuracy and precision for the measurements of C-4 and C-5 saturated compounds in a smoke sample by selective injection of target compounds into a combustion furnace and consequently allowed us to provide complete baseline separation for all individual NMHCs. The analytical precision of the delta(13)C of each compound was better than 0.5 parts per thousand for more than 500 pmolC injections and 2.1 parts per thousand for 30 pmolC injections, which was estimated from replicate analysis of stan(lard gases. This system was applied to the analysis of NMHCs in smoke samples collected from laboratory biomass burning experiments. From the combustion of three fuel materials (rice straw, pine wood, and maize), we found that the isotopic fractionation between fuel material and individual NMHCs is almost independent of the fuel material and thus the delta(13)C values of the fuel materials are reflected in delta(13)C values of most of NMHCs. However, only i-butane emitted from maize combustion showed anomalous C-13-depletion of -11.6 parts per thousand relative to the delta(13)C value of maize. Such a large C-13 depletion suggests the specific isotopic fractionation process which is attributed to the maize combustion itself or the chemical properties of i-butane during production from a radical recombination reaction. Copyright (c) 2005 John Wiley & Sons, Ltd.
机译:开发了二维气相色谱/燃烧/同位素比质谱(2D-GC / C / IRMS)系统,用于稳定燃烧生物质燃烧烟气中C-2-C-5非甲烷碳氢化合物(NMHC)的碳同位素。 2D-GC / C / IRMS系统通过将目标化合物选择性注入燃烧炉中,成功提高了烟雾样品中C-4和C-5饱和化合物的测量精度和精密度,从而使我们能够提供完整的基线分离所有NMHC。通过重复分析锡气来估算,每种化合物的δ(13)C的分析精度在进样500 pmolC以上时,优于千分之0.5;对于进样30 pmolC中,千分之2.1。应用于实验室生物质燃烧实验收集的烟雾样品中的NMHCs分析,从三种燃料材料(稻草,松木和玉米)的燃烧中,我们发现燃料材料与单个NMHCs之间的同位素分馏几乎是独立的燃料材料的δ(13)C值反映在大多数NMHC的delta(13)C值中,但是,只有玉米燃烧释放的异丁烷显示出异常的C-13损耗-相对于玉米的delta(13)C值,千分之11.6。如此大的C-13损耗表明特定的同位素分馏过程归因于玉米燃烧本身或化学性质o由自由基重组反应生产的异丁烷。版权所有(c)2005 John Wiley&Sons,Ltd.

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