Department of Chemistry, University of Calgary, 2500 University Drive, NW, Calgary, Alberta T2N 1N4, Canada.
Anal Chem. 2009 Nov 1;81(21):8858-67. doi: 10.1021/ac901421s.
A multiple flame photometric detector (mFPD) based on many flames operated in series is introduced for the detection of sulfur and phosphorus compounds. The method employs attributes of a previously developed micro counter-current flame technique to readily establish any number of very small compact flames inside a narrow quartz tube. Results show for the first time that a five flame mFPD mode can improve hydrocarbon quenching resistance nearly 20-fold relative to a single flame (i.e., conventional FPD) mode, and nearly 10-fold relative to a two flame (i.e., dual FPD) mode. Under these conditions, the five flame mFPD mode is shown to maintain about 60% of its original analyte chemiluminescence even in the presence of over 100 mL/min of methane flow into the detector. In contrast to a conventional dual FPD device, the five flame mFPD mode also provides analyte sensitivity that is similar to a conventional FPD. Of note, the mFPD yields minimum detectable limits for sulfur and phosphorus of 4 x 10(-11) g S/s and 3 x 10(-12) g P/s respectively. Analyte selectivity over hydrocarbons, signal reproducibility, and response equimolarity are also improved in the mFPD, making it a potentially useful detector for applications in gas chromatography.
一种基于串联操作的多火焰光度检测器 (mFPD) 被介绍用于检测硫和磷化合物。该方法利用先前开发的微逆流火焰技术的属性,可在狭窄的石英管内轻松建立任意数量的非常小的紧凑火焰。结果首次表明,与单火焰(即传统 FPD)模式相比,五火焰 mFPD 模式可将烃类猝灭抗性提高近 20 倍,与双火焰(即双 FPD)模式相比,可提高近 10 倍。在这些条件下,即使在检测器中流入超过 100 毫升/分钟的甲烷,五火焰 mFPD 模式仍可保持约 60%的原始分析物化学发光。与传统的双 FPD 装置相比,五火焰 mFPD 模式还提供与传统 FPD 相似的分析物灵敏度。值得注意的是,mFPD 对硫和磷的最小检测限分别为 4 x 10(-11) g S/s 和 3 x 10(-12) g P/s。烃类的分析物选择性、信号重现性和响应等摩尔性也在 mFPD 中得到改善,使其成为气相色谱应用中一种潜在有用的检测器。