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Observations on comprehensive two dimensional gas chromatography coupled with flame photometric detection for sulfur- and phosphorus-containing compounds

机译:综合二维气相色谱-火焰光度法检测含硫和磷化合物的观察

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A comprehensive two-dimensional gas chromatography (GC × GC) system has been coupled to dual channel flame photometric detection (FPD) and evaluated for its performance in the analysis of sulfur- and phosphorus-containing compounds. The detector flow, including hydrogen, air and nitrogen gas was adjusted to achieve the maximum response and peak symmetry during GC × GC analysis in the sulfur and phosphorus mode respectively. Peak asymmetry for S-mode ranged from 0.30 to 0.66 and so exhibited considerable tailing for all flame gas settings. The peak asymmetry and peak width at half height (which ranged from 246 to 384 ms) were both relatively sensitive towards detector gas flow settings. By contrast in P-mode, peak asymmetry was almost unaffected by flame gas settings, and peak widths at half height were relatively constant, ranging from 165 to 185 ms. Results showed that increased detector acquisition rate up to 200 Hz distinctly reduced the signal-to-noise ratio, without affecting the modulated peak width. Occurrence of sulfur peak tailing behaviour during GC × GC analysis restricted the upper limit of sulfur response linearity range. Detection limits were estimated to be 617 pg/s in S-mode and 45 pg/s in P-mode for GC × GC operation, which were higher than the value estimated for 1D GC-FPD operation. The compatibility of GC × GC with FPD has been successfully demonstrated for the separation of sulfur-containing organophosphorus (OP) pesticides in S2 and HPO modes, as well as the organosulfur (OS) compounds in diesel and kerosene samples in S2 mode...
机译:全面的二维气相色谱(GC×GC)系统已与双通道火焰光度检测(FPD)耦合,并对其在分析含硫和含磷化合物中的性能进行了评估。调节检测器流量,包括氢气,空气和氮气,以在硫和磷模式下分别进行GC×GC分析时获得最大响应和峰对称性。 S模式的峰不对称范围为0.30至0.66,因此在所有火焰气体设置下均表现出相当大的拖尾。峰的不对称性和半高处的峰宽(范围从246到384 ms)都对检测器气流设置相对敏感。相比之下,在P模式下,峰值不对称性几乎不受火焰气体设置的影响,并且半高处的峰宽相对恒定,范围从165到185 ms。结果表明,高达200 Hz的检测器采集速率的提高明显降低了信噪比,而不会影响调制的峰宽。 GC×GC分析过程中硫峰拖尾行为的出现限制了硫响应线性范围的上限。对于GC×GC操作,检测限在S模式下估计为617 pg / s,在P模式下为45 pg / s,高于一维GC-FPD操作的估计值。 GC×GC与FPD的相容性已成功证明可分离S2和HPO模式下的含硫有机磷(OP)农药,以及S2模式下柴油和煤油样品中的有机硫(OS)化合物。

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