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采用触发模式运行的自动气相色谱法进行环境空气监测。

Ambient air monitoring with Auto-gas chromatography running in trigger mode.

作者信息

Zhou Liming, Zeng Yousheng, Hazlett Pamela D, Matherne Valerie

机构信息

Providence Engineering and Environmental Group LLC, Baton Rouge, LA 70802, United States.

出版信息

Anal Chim Acta. 2007 Jul 16;596(1):156-63. doi: 10.1016/j.aca.2007.05.058. Epub 2007 Jun 7.

Abstract

Speciated volatile organic compounds (VOC), either as ozone precursors or air toxics in the air, are commonly monitored by triggered canister method or continuous ozone precursor analyzer (commonly known as Auto-gas chromatography (GC)) method. In the triggered canister method, a canister sample is collected when a total non-methane organic compound (TNMOC) concentration exceeds a pre-determined trigger level. The canister sample is then analyzed in a lab in a later time. In the Auto-GC method, an online GC runs in a "continuous" mode with a sampling and analysis cycle of 1 h. Within the cycle hour, samples are collected only during the first 40 min. A new approach of Auto-GC running in trigger mode is developed in this study. This new approach uses Auto-GC but operates it in a trigger mode similar to the triggered canister sampling method. Compared to the triggered canister sample method, this system provides near real-time speciated VOC data, which are critical for responding to a high VOC concentration episode. Although the canister system generally costs less, its cost advantage may diminish if trigger events are frequent and the monitoring duration is long. Compared to continuous Auto-GC, triggered GC has its niche--it is better for capturing transient plumes with a small footprint. The continuous GC either misses a transient plume if the plume does not arrive at the sampling site during the sampling cycle or flattens the plume concentration peak by dilution with non-plume air sample. Field experience with this system for fenceline VOC monitoring is presented. The sampling and calibration strategy for trigger mode operation is described. The chromatograph retention time drift issues are discussed. The system performance is evaluated, including the method detection limit, precision and accuracy. The trigger mode configuration for VOC fenceline or near source monitoring in this work proved effective for local and transient plume identification.

摘要

作为臭氧前体物或空气中的空气有毒物质的特定挥发性有机化合物(VOC),通常通过触发式采样罐法或连续臭氧前体物分析仪(通常称为自动气相色谱法(GC))进行监测。在触发式采样罐法中,当总非甲烷有机化合物(TNMOC)浓度超过预定触发水平时,采集一个采样罐样品。然后在稍后的时间在实验室中对采样罐样品进行分析。在自动气相色谱法中,在线气相色谱仪以“连续”模式运行,采样和分析周期为1小时。在这一小时的周期内,仅在前40分钟内采集样品。本研究开发了一种以触发模式运行的自动气相色谱法的新方法。这种新方法使用自动气相色谱仪,但以类似于触发式采样罐采样法的触发模式运行。与触发式采样罐采样法相比,该系统提供了近实时的特定VOC数据,这对于应对高VOC浓度事件至关重要。尽管采样罐系统通常成本较低,但如果触发事件频繁且监测持续时间长,其成本优势可能会减弱。与连续自动气相色谱法相比,触发式气相色谱法有其独特之处——它更适合于以较小的占地面积捕获瞬态烟羽。如果烟羽在采样周期内未到达采样点,连续气相色谱法要么错过瞬态烟羽,要么通过与非烟羽空气样品稀释来平缓烟羽浓度峰值。介绍了该系统用于围栏线VOC监测的现场经验。描述了触发模式操作的采样和校准策略。讨论了色谱仪保留时间漂移问题。评估了系统性能,包括方法检测限、精密度和准确度。在这项工作中,用于VOC围栏线或近源监测的触发模式配置被证明对本地和瞬态烟羽识别有效。

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