Department of Environmental Health Sciences, University of Michigan, Ann Arbor, Michigan 48109-2029, United States.
Anal Chem. 2011 Sep 15;83(18):7198-206. doi: 10.1021/ac201788q. Epub 2011 Aug 22.
A complete field-deployable microfabricated gas chromatograph (μGC) is described, and its adaptation to the analysis of low- and subparts-per-billion (ppb) concentrations of trichloroethylene (TCE) vapors in complex mixtures is demonstrated through laboratory testing. The specific application being addressed concerns the problem of indoor air contamination by TCE vapor intrusion. The μGC prototype employs a microfabricated focuser, dual microfabricated separation columns, and a microsensor array. These are interfaced to a nonmicrofabricated front-end pretrap and high-volume sampler module to reduce analysis time and limits of detection (LOD). Selective preconcentration and focusing are coupled with rapid chromatographic separation and multisensor detection for the determination of TCE in the presence of up to 45 interferences. Autonomous operation is possible via a laptop computer. Preconcentration factors as high as 500 000 are achieved. Sensitivities are constant over the range of captured TCE masses tested (i.e., 9-390 ng), and TCE is measured in a test atmosphere at 120 parts-per-trillion (ppt), with a projected LOD of 40 ppt (4.2 ng captured, 20 L sample) and a maximum sampling + analytical cycle time of 36 min. Short- and medium-term (1 month) variations in retention time, absolute responses, and response patterns are within acceptable limits.
一种完整的现场可部署微加工气相色谱仪(μGC)被描述,并且通过实验室测试展示了其对分析复杂混合物中低浓度和亚部分十亿分之几(ppb)浓度的三氯乙烯(TCE)蒸气的适应性。正在解决的具体应用涉及到 TCE 蒸气入侵导致的室内空气污染问题。μGC 原型采用微加工聚焦器、双微加工分离柱和微传感器阵列。这些与非微加工前端预浓缩和大容量采样器模块接口,以减少分析时间和检测限(LOD)。选择性预浓缩和聚焦与快速色谱分离和多传感器检测相结合,可在存在多达 45 种干扰物的情况下确定 TCE。通过笔记本电脑可以实现自主操作。浓缩因子高达 500000。在测试的捕获 TCE 质量范围内,灵敏度保持不变(即 9-390ng),并且可以在 120ppt 的测试气氛中测量 TCE,预计 LOD 为 40ppt(4.2ng 捕获,20L 样品),最大采样+分析周期时间为 36 分钟。保留时间、绝对响应和响应模式的短期和中期(1 个月)变化在可接受的范围内。