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The fundamental properties of the direct injection method in the analysis of gaseous reduced sulfur by gas chromatography with a pulsed flame photometric detector

机译:脉冲火焰光度检测器气相色谱法分析气态还原硫中直接注入法的基本特性

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In this study,the fundamental aspects of gas chromatography with a pulsed flame photometric detector were investigated through the calibration of gaseous reduced sulfur compounds based on the direct injection method.Gaseous standards of five reduced sulfur compounds (hydrogen sulfide,methane thiol,dimethyl sulfide,carbon disulfide,and dimethyl disulfide) were calibrated as a function of injection volume and concentration level.The results were evaluated by means of two contrasting calibration approaches:fixed standard concentration method (variable volumetric injection of standard gases prepared at a given concentration) and fixed standard volume method (injection of multiple standards with varying concentrations at a given volume).The optimum detection limit values of reduced sulfur compounds,when estimated at 100 mu L of injection volume,ranged from 2.37 pg (carbon disulfide) to 4.89 pg (dimethyl sulfide).Although these detection limit values improved gradually with decreasing injection volume,the minimum detectable concentration (e.g.,in nmol mol~(-1) scale) remained constant due to a balance by the sample volume reduction.The linearity property of pulsed flame photometric detector also appeared to vary dynamically with changes in its sensitivity.According to this study,the performance of pulsed flame photometric detector,when tested by direct injection method,is highly reliable to precisely describe the behavior of reduced sulfur compounds above ~20 nmol mol~(-1).
机译:本研究通过直接进样方法对气态还原硫化合物进行标定,研究了使用脉冲火焰光度检测器进行气相色谱分析的基本方面。五种还原硫化合物(硫化氢,甲烷硫醇,二甲基硫,根据进样量和浓度水平对二硫化碳和二甲基二硫进行校准。通过两种对比校准方法对结果进行评估:固定标准浓度法(在给定浓度下可变体积注入标准气体)和固定标准体积法(在给定体积下进样多种浓度不同的标准溶液)当以进样量100μL估算时,还原性硫化合物的最佳检测极限值为2.37 pg(二硫化碳)至4.89 pg(二甲基)尽管这些检测极限值随着进样量的减少而逐渐提高离子体积,最小可检测浓度(例如,nmol mol〜(-1)标度)由于样品体积减少而保持平衡。脉冲火焰光度检测器的线性特性也随着灵敏度的变化而动态变化。根据这项研究,脉冲火焰光度检测器的性能,通过直接注入法进行测试时,非常可靠,可以精确地描述〜20 nmol mol〜(-1)以上的还原硫化合物的行为。

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