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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Development and validation of an automated monitoring system for oxygenated volatile organic compounds and nitrile compounds in ambient air
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Development and validation of an automated monitoring system for oxygenated volatile organic compounds and nitrile compounds in ambient air

机译:开发和验证用于环境空气中的氧化性挥发性有机化合物和腈化合物的自动监控系统

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Few studies were conducted on oxygenated volatile organic compounds (OVOC) because of problems encountered during the sampling/analyzing steps induced by water in sampled air. Consequently, there is a lack of knowledge of their spatial and temporal trends and their origins in ambient air. In this study, an analyzer consisted of a thermal desorber (TD) interfaced with a gas chromatograph (GC) and a flame ionization detector (FID) was developed for online measurements of 18 OVOC in ambient air including 4 alcohols, 6 aldehydes, 3 ketones, 3 ethers, 2 esters and 4 nitriles. The main difficulty was to overcome the humidity effect without loss of compounds. Water amount in the sampled air was reduced by the trap composition (two hydrophobic graphitized carbons-Carbopack B:Carbopack X), the trap temperature (held at 12.5 degrees C), by diluting (50:50) the sample with dry air before the preconcentration step and a trap purge with helium. Humidity management allowed the use of a polar CP-Lowox column in order to separate the polar compounds from the hydrocarbon/aromatic matrix. The safe sampling volume for the dual-sorbent trap 75 mg Carbopack X:5 mg Carbopack B was found to 405 mL for ethanol by analyzing a standard mixture at a relative humidity of 80%. Detection limits ranging from 10 ppt for ETBE to 90 ppt for ethanol were obtained for 18 compounds for a sampling volume of 405 mL. Good repeatabilities were obtained at two levels of concentration (relative standard deviation <5%). The calibration (ranging from 0.5 to 10ppb) was set up at three different levels of relative humidity to test the humidity effect on the response coefficients. Results showed that the response coefficients of all compounds were less affected by humidity except for those of ethanol and acetonitrile (decrease respectively of 30% and 20%). The target compounds analysis shows good reproducibility with response coefficient variability of less then 10% of the mean initial value of calibration for all the compounds. Hourly ambient air measurements were conducted in an urban site in order to test this method. On the basis of these measurements, ethanol, acetone and acetaldehyde have shown the highest concentration levels with an average of 2.10, 1.75 and 1.37 ppb respectively. The daily evolution of some OVOC, namely ethanol and acetaldehyde, was attributed to emissions from motor vehicles while acetone has a different temporal evolution that can be probably associated with remote sources.
机译:由于在采样空气中水引起的采样/分析步骤中遇到问题,因此对含氧挥发性有机化合物(OVOC)进行的研究很少。因此,缺乏关于它们的时空趋势及其在周围空气中的起源的知识。在这项研究中,开发了一种由热脱附器(TD)和气相色谱仪(GC)和火焰离子化检测器(FID)组成的分析仪,用于在线测量环境空气中的18种OVOC,包括4种醇,6种醛,3种酮,3个醚,2个酯和4个腈。主要困难在于克服湿度影响而又不损失化合物。捕集阱组成(两种疏水性石墨化碳-Carbopack B:Carbopack X),捕集阱温度(保持在12.5摄氏度),在进样前用干燥空气稀释(50:50)来减少采样空气中的水量。预浓缩步骤和用氦气吹扫捕集阱。湿度管理允许使用极性CP-Lowox色谱柱,以将极性化合物与烃/芳烃基质分离。通过在80%的相对湿度下分析标准混合物,发现双吸附阱75 mg Carbopack X:5 mg Carbopack B的安全采样体积为405 mL乙醇。对18种化合物的检测限为ETBE 10 ppt至乙醇90 ppt,进样量为405 mL。在两个浓度水平下均具有良好的重复性(相对标准偏差<5%)。在三种不同的相对湿度水平上进行校准(范围为0.5至10ppb),以测试湿度对响应系数的影响。结果表明,除乙醇和乙腈(分别降低30%和20%)外,所有化合物的响应系数均受湿度的影响较小。目标化合物的分析显示出良好的重现性,响应系数变异性小于所有化合物标定平均初始值的10%。为了测试这种方法,每小时在城市现场进行一次环境空气测量。根据这些测量,乙醇,丙酮和乙醛的浓度最高,分别为2.10、1.75和1.37 ppb。某些OVOC(即乙醇和乙醛)的每日排放量归因于机动车排放,而丙酮具有不同的时间变化,可能与遥远的排放源有关。

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