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微小型氢火焰离子化检测器及在色谱中的应用

王建伟 彭虹 段春凤 关亚风

分析化学2011,Vol.39Issue(3):439-442,4.
分析化学2011,Vol.39Issue(3):439-442,4.DOI:10.3724/SP.J.1096.2011.00439

微小型氢火焰离子化检测器及在色谱中的应用

Development of a Micro-flame Ionization Detector for Portable Gas Chromatography

王建伟 1彭虹 2段春凤 1关亚风2

作者信息

  • 1. 中国科学院大连化学物理研究所仪器分析化学研究室,中国科学院分离分析化学重点实验室,大连,116023
  • 2. 中国科学院研究生院,北京,100039
  • 折叠

摘要

Abstract

A micro-flame ionization detector (μ-FID) was developed. Differing from the traditional FID, air was introduced from the side of the upper part of the μ-FID body, flowing downwards into the burning chamber along a narrow round gap between the collection electrode and the inner wall of the detector body. When the coaxial flow of air reached the bottom of the chamber, it turned 180 °and flowed out through the hollow collector. The jet tip was located along the axis of the chamber and the collector, where the air flow was extremely stable, yielding extremely low noise level. A much higher polarization voltage was then applied to enhance ionization efficiency. Several important parameters were optimized, including the material and inner diameter of the jet tip, the length of collector, the distance between jet tip and collector, polarization voltage and gas flow rate. Under the optimized condition, the signal-to-noise ratios improved over one order of magnitude when polarization voltage increased from 150 V to 800 V. The limit of detection of the μ-FID was 1× 10-12 g/s, with a linear response of five orders of magnitude. Compared with traditional FID, the μ-FID only needs two kinds of gases (hydrogen and air) and gas consumption decreases 70%. The detector is small in volume,simple in structure, sensitive and easy to construct, suggesting that it is an excellent detector for portable GC. The μ-FID was also applied to analyze five phenolic compounds in real water samples.

关键词

氢火焰离子化检测器/微型化/检测器结构/极化电压

Key words

Micro-flame ionization detector/ Miniaturization/ Structure/ Polarization voltage

引用本文复制引用

王建伟,彭虹,段春凤,关亚风..微小型氢火焰离子化检测器及在色谱中的应用[J].分析化学,2011,39(3):439-442,4.

基金项目

本文系国家自然科学基金仪器专项基金(No.20627006)、科技部863课题(No.2006AA06A301)、863目标导向课题(No.2007AA06Z419)资助 (No.20627006)

分析化学

OA北大核心CSCDCSTPCDSCI

0253-3820

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