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利用微逆流火焰光度检测器对有机磷和有机硫化合物进行超快速气相色谱分离。

Ultrafast gas chromatographic separation of organophosphor and organosulfur compounds utilizing a microcountercurrent flame photometric detector.

作者信息

Kendler Shai, Reidy Shaelah M, Lambertus Gordon R, Sacks Richard D

机构信息

Department of Chemistry, University of Michigan, 930 North University, Ann Arbor, Michigan 48109, USA.

出版信息

Anal Chem. 2006 Oct 1;78(19):6765-73. doi: 10.1021/ac060851a.

DOI:10.1021/ac060851a
PMID:17007495
Abstract

A microcountercurrent flame photometric detector (microcc-FPD) was adapted and optimized for ultrafast gas chromatographic (GC) separation and detection of organophosphor (OP) and organosulfur (OS) compounds on short chromatographic columns. Air and hydrogen are introduced to the microcc-FPD from opposite directions, creating a hydrogen-rich flame. In this microcc-FPD, combustion takes place between the burner tips without touching them. The separation between the tips and the flame reduces heat loss from the flame to the surrounding environment, resulting in low hydrogen consumption and a compact flame. The microcc-FPD is capable of detecting very narrow (13 ms) chromatographic peaks. An ultrafast GC separation of a group of six OP and OS compounds is achieved within less than 5 s using fast temperature programming of a 0.5-m-long microbore column. Very fast separations are also demonstrated on a 1-m-long microfabricated column consisting of 150-microm-wide, 240-microm-deep channels, etched in a 1.9-cm square silicon chip, covered with a Pyrex wafer, and statically coated with dimethyl polysiloxane. With a hydrogen flow rate of 10 mL/min, the detection limit for OP is 12 pg of P/s and 3 ng of S/s for OS compounds at a signal-to-noise ratio of 2. The coupling of a microfabricated column and a miniature FPD is an important step toward the development of a miniaturized GC-FPD capable of ultrafast detection of low levels of OP and OS compounds.

摘要

一种微逆流火焰光度检测器(microcc-FPD)被改造并优化,用于在短色谱柱上对有机磷(OP)和有机硫(OS)化合物进行超快速气相色谱(GC)分离和检测。空气和氢气从相反方向引入到microcc-FPD中,形成富氢火焰。在这种microcc-FPD中,燃烧在燃烧器尖端之间发生而不接触它们。尖端与火焰之间的间隔减少了火焰向周围环境的热损失,从而降低了氢气消耗并形成紧凑的火焰。microcc-FPD能够检测非常窄(13毫秒)的色谱峰。使用0.5米长的微径柱进行快速温度程序升温,在不到5秒的时间内实现了一组六种OP和OS化合物的超快速GC分离。在一个1米长的微制造柱上也展示了非常快速的分离,该柱由蚀刻在1.9平方厘米方形硅芯片上、宽150微米、深240微米的通道组成,覆盖有派热克斯玻璃晶片,并静态涂覆有二甲基聚硅氧烷。在氢气流量为10毫升/分钟时,OP的检测限为12皮克磷/秒,OS化合物的检测限为3纳克硫/秒,信噪比为2。微制造柱与微型FPD的耦合是朝着开发能够超快速检测低水平OP和OS化合物的小型化GC-FPD迈出的重要一步。

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