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美杜莎:一种用于现场测量大气中痕量卤代烃、碳氢化合物和硫化合物的样品预浓缩和气相色谱/质谱检测系统。

Medusa: a sample preconcentration and GC/MS detector system for in situ measurements of atmospheric trace halocarbons, hydrocarbons, and sulfur compounds.

作者信息

Miller Benjamin R, Weiss Ray F, Salameh Peter K, Tanhua Toste, Greally Brian R, Mühle Jens, Simmonds Peter G

机构信息

Scripps Institution of Oceanography, University of California, San Diego, La Jolla, California 92093, USA.

出版信息

Anal Chem. 2008 Mar 1;80(5):1536-45. doi: 10.1021/ac702084k. Epub 2008 Jan 31.

Abstract

Significant changes have occurred in the anthropogenic emissions of many compounds related to the Kyoto and Montreal Protocols within the past 20 years and many of their atmospheric abundances have responded dramatically. Additionally, there are a number of related natural compounds with underdetermined source or sink budgets. A new instrument, Medusa, was developed to make the high frequency in situ measurements required for the determination of the atmospheric lifetimes and emissions of these compounds. This automated system measures a wide range of halocarbons, hydrocarbons, and sulfur compounds involved in ozone depletion and/or climate forcing, from the very volatile perfluorocarbons (PFCs, e.g., CF(4) and CH(3)CF(3)) and hydrofluorocarbons (HFCs, e.g., CH(3)CF(3)) to the higher-boiling point solvents (such as CH(3)Cl(3) and CCl(2)=CCl(2)) and CHBr(3). A network of Medusa systems worldwide provides 12 in situ ambient air measurements per day of more than 38 compounds of part per trillion mole fractions and precisions up to 0.1% RSD at the five remote field stations operated by the Advanced Global Atmospheric Gases Experiment (AGAGE). This custom system couples gas chromatography/mass spectrometry (GC/MSD) with a novel scheme for cryogen-free low-temperature preconcentration (-165 degrees C) of analytes from 2 L samples in a two-trap process using HayeSep D adsorbent.

摘要

在过去20年里,与《京都议定书》和《蒙特利尔议定书》相关的许多化合物的人为排放量发生了显著变化,它们在大气中的丰度也有了显著响应。此外,还有一些相关的天然化合物,其源或汇的收支情况尚未确定。为了测定这些化合物的大气寿命和排放量,人们开发了一种新仪器——美杜莎(Medusa),用于进行高频原位测量。该自动化系统可测量多种参与臭氧消耗和/或气候强迫的卤代烃、碳氢化合物和硫化合物,从极易挥发的全氟化碳(PFCs,如CF(4)和CH(3)CF(3))和氢氟碳化物(HFCs,如CH(3)CF(3))到沸点较高的溶剂(如CH(3)Cl(3)和CCl(2)=CCl(2))以及CHBr(3)。全球范围内的美杜莎系统网络,在由先进全球大气气体实验(AGAGE)运营的五个偏远野外站,每天对超过38种万亿分之一摩尔分数的化合物进行12次原位环境空气测量,相对标准偏差(RSD)精度高达0.1%。这个定制系统将气相色谱/质谱联用仪(GC/MSD)与一种新颖的方案相结合,该方案使用HayeSep D吸附剂,通过双阱过程对2升样品中的分析物进行无低温致冷剂的低温预浓缩(-165摄氏度)。

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