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COMBINED PULSED FLAME PHOTOMETRIC IONIZATION DETECTOR

机译:组合脉冲火焰光度电离检测器

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The pulsed flame photometric ionization detector (PFPID) is designed for the simultaneous selective detection of molecules containing carbon, sulfur, phosphorus, or nitrogen atoms using gas chromatography (GC). The PFPID is based on a pulsed name which propagates from the igniter through the ionization and photometric chambers consecutively, The flame is then self-terminated and reignited after a few hundred milliseconds in a pulsed periodic fashion. Since the pulsed name photometer works with a hydrogen-rich atmosphere, the GC eluting molecules are predominantly pyrolyzed and only slightly combusted in the initial pulsed name photometric chamber. These products are further combusted in the second pulsed flame ionization chamber, where the combustible gas mixture is separately optimized. The resulting electrons/ions are collected by an electrically isolated collector positively biased to 10 V, The addition of a pulsed flame ionization detector (PFID) to the pulsed name photometric detector (PFPD) requires addition of negligible hardware (an isolated charge collector). It also requires the addition of a current-to-voltage converter and a double-gated instead of a single-gated amplifier for simultaneous PFPD-PFID work The PFPID can be operated separately as either a pulsed FPD or a pulsed FID or simultaneously as both at the same H-2/air gas now rates. The simultaneous selective analysis of sulfur and organic compounds in gasoline, kerosene, and diesel fuel is demonstrated and discussed in terms of the various operational parameters. The performance of the PFPID is analyzed and compared to that of other sulfur and carbon simultaneous selective detection schemes.
机译:脉冲火焰光度电离检测器(PFPID)设计用于使用气相色谱(GC)同时选择性地检测包含碳,硫,磷或氮原子的分子。 PFPID基于脉冲名称,该脉冲名称从点火器连续传播通过电离室和光度室。然后,火焰在几百毫秒后以脉冲周期的方式自我终止并重新点燃。由于脉冲名称光度计在富氢气氛下工作,因此GC洗脱分子主要被热解,并且在初始脉冲名称光度室中仅发生轻微燃烧。这些产品在第二个脉冲火焰离子化室中进一步燃烧,可燃气体混合物在此被单独优化。产生的电子/离子由正偏置至10 V的电隔离收集器收集。向脉冲名称光度检测器(PFPD)添加脉冲火焰电离检测器(PFID)需要添加可忽略的硬件(隔离电荷收集器)。它还需要附加一个电流电压转换器和一个双门控放大器,而不是一个单门控放大器,以同时进行PFPD-PFID工作PFPID可以作为脉冲FPD或脉冲FID分别工作,也可以同时作为两者工作现在以相同的H-2 /空气速率根据各种运行参数,对汽油,煤油和柴油中硫和有机化合物的同时选择性分析进行了演示和讨论。分析了PFPID的性能,并将其与其他硫和碳同时选择性检测方案的性能进行了比较。

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