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大气中活性挥发性卤代有机化合物的自动测量与校准。

Automated measurement and calibration of reactive volatile halogenated organic compounds in the atmosphere.

作者信息

Wevill David J, Carpenter Lucy J

机构信息

Department of Chemistry, University of York, Heslington, York, YO10 5DD UK.

出版信息

Analyst. 2004 Jul;129(7):634-8. doi: 10.1039/b403550j. Epub 2004 Jun 8.

Abstract

The automated calibration and analysis of very low mixing ratios of the reactive volatile organic halocarbons CH(3)I, CHCl(3), C(2)H(5)I, 2-C(3)H(7)I, CH(2)Br(2), CH(2)ClI, CHBr(2)Cl, 1-C(3)H(7)I, CH(2)BrI, CHBr(3) and CH(2)I(2) for long term atmospheric field measurements are described. Analytes were pre-concentrated from 3 l of air onto an adsorbent trap cooled to -10 [degree]C using Peltier plates, and rapidly transferred to a gas chromatograph (GC) by resistive heating. A two stage Carboxen 1016/Carbotrap C adsorbent trap allowed good analyte recovery and rapid desorption without the need for post-desorption cryofocussing. Halocarbons were detected using a mass spectrometer (MS) in selective ion mode. Detection limits were between 0.02 and 0.12 pptv (parts per trillion by volume) for approximately hourly samples of CHCl(3), CH(3)I, C(2)H(5)I, 1-C(3)H(7)I, 2-C(3)H(7)I, CH(2)ClI, CH(2)Br(2), CHBr(2)Cl, CH(2)BrI, CHBr(3) and CH(2)I(2) with a precision of 3-8%. A novel calibration system was constructed which utilised fixed volume (50 [micro sign]l) injections of the output of thermostatted permeation tubes into a stream of nitrogen gas in order to dilute parts per million by volume (ppmv) mixing ratios into pptv. The calibration was completely automated, allowing multi-point calibrations during routine operation. The overall accuracy of the measurements is estimated to be +/-15%. The instrument was used continuously for automated atmospheric measurements during a 4-month research cruise from Germany to Antarctica, and a 6 week field campaign at Mace Head, Ireland. The results for CHCl(3) during the latter campaign were within 13% of measurements made by a GC-MS operating continuously at the site within the long term Advanced Global Atmospherics Gases Experiment.

摘要

本文描述了用于长期大气现场测量的反应性挥发性有机卤代烃CH(3)I、CHCl(3)、C(2)H(5)I、2-C(3)H(7)I、CH(2)Br(2)、CH(2)ClI、CHBr(2)Cl、1-C(3)H(7)I、CH(2)BrI、CHBr(3)和CH(2)I(2)极低混合比的自动校准和分析方法。分析物通过珀耳帖板冷却至-10℃,从3升空气中预浓缩到吸附阱上,然后通过电阻加热快速转移到气相色谱仪(GC)中。两级Carboxen 1016/Carbotrap C吸附阱可实现良好的分析物回收率和快速解吸,无需解吸后低温聚焦。使用质谱仪(MS)在选择离子模式下检测卤代烃。对于CHCl(3)、CH(3)I、C(2)H(5)I、1-C(3)H(7)I、2-C(3)H(7)I、CH(2)ClI、CH(2)Br(2)、CHBr(2)Cl、CH(2)BrI、CHBr(3)和CH(2)I(2)大约每小时一次的样品,检测限在0.02至0.12 pptv(体积分数万亿分之一)之间,精密度为3-8%。构建了一种新型校准系统,该系统利用恒温渗透管输出的固定体积(50 μl)注入氮气气流中,以便将百万分之一体积分数(ppmv)的混合比稀释为pptv。校准完全自动化,允许在常规操作期间进行多点校准。测量的总体准确度估计为±15%。该仪器在从德国到南极洲的为期4个月的研究航行以及在爱尔兰梅斯黑德进行的为期6周的野外考察期间,连续用于大气自动测量。在后一次考察中,CHCl(3)的测量结果与长期高级全球大气气体实验中在该地点连续运行的GC-MS测量结果相差在13%以内。

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