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A novel method for the compound specific determination of d 13 C in volatile organic compounds at ppt levels in ambient air

机译:在环境空气中以ppt水平测定挥发性有机化合物中d 13 C的化合物的新方法

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摘要

EASI Search Result AbstractA novel method for compound specific determination of δ13C in volatile organic compounds at ppt levels in ambient airJ. RudolphInstitut für Atmosphärische Chemie, Forschungszentrum Jülich, Germany David C. LoweNational Institute of Water and Atmospheric Research Ltd, Wellington, New Zealand R. J. MartinNational Institute of Water and Atmospheric Research Ltd, Wellington, New Zealand T. S. ClarksonNational Institute of Water and Atmospheric Research Ltd, Wellington, New Zealand A novel method for the compound specific determination of δ13C in VOC is presented. It combines a cryogenic preconcentration procedure with gas chromatographic separation, on‐line combustion and isotope ratio mass spectrometry. The method allows the determination of δ13C values of VOC at sub ppb levels with a precision of 0.5‰. The procedure is suitable for routine operation. The accuracy of the method is of the same quality as the reproducibility of the measurements. The first ever measurements of δ13C in selected VOC in clean air are presented and compared with data from samples of contaminated air. The variability in the δ13C values of atmospheric VOC is much larger than the accuracy and precision of the measuring method. Hence the technique will be a very valuable tool to complement concentration measurements of VOC and to improve our understanding of the processes governing the distribution of VOC in the atmosphere.
机译:EASI搜索结果摘要一种测定环境空气中ppt含量的挥发性有机化合物中δ13C的化合物的特异性新方法J。 Rudolph InstitutfürAtmosphärischeChemie,ForschungszentrumJülich,德国David C. Lowe国家水和大气研究所,新西兰惠灵顿RJ Martin国家水和大气研究所,新西兰惠灵顿TS Clarkson国家水和大气研究所,惠灵顿新西兰提出了一种新的挥发性有机化合物中δ13C特异性测定方法。它结合了低温预浓缩程序,气相色谱分离,在线燃烧和同位素比质谱法。该方法可以测定亚ppb级的VOC的δ13C值,精度为0.5‰。该程序适用于常规操作。该方法的准确性与测量的可重复性具有相同的质量。介绍了有史以来首次在选定的VOC中清洁空气中δ13C的测量值,并将其与污染空气样品的数据进行了比较。大气VOC的δ13C值的变异性远大于测量方法的准确性和精密度。因此,该技术将是一种非常有价值的工具,可补充VOC的浓度测量并增进我们对控制大气中VOC分布的过程的理解。

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