化学
甲烷
火焰离子化检测器
气相色谱法
分析化学(期刊)
二氧化碳
热导检测器
碳纤维
校准曲线
校准
色谱法
检出限
有机化学
材料科学
复合材料
统计
复合数
数学
作者
Yuko Kitamaki,Nobuyuki Aoki,Shinsuke Aoki,Hiroshi Ishida,Masahiro Suzumura
标识
DOI:10.1007/s44211-023-00279-8
摘要
Ambient air commonly contains carbon dioxide at concentrations greater than 400 µmol mol-1 and methane at ~ 2000 nmol mol-1; non-methane hydrocarbons are also widespread in the atmosphere at much lower concentrations. For quantification of various carbon-containing compounds in typical analytical instrument, corresponding number of reference materials are required. Therefore, the development of a method that uses a single reference material applicable to air monitoring is desired. Here, we examined a post-column reaction system combined with a gas chromatograph equipped with a flame ionization detector (FID), which involves oxidation and reduction processes after separation. To determine various carbon-containing gases by post-column reaction gas chromatography with FID (GC-r-FID) using a single reference, it is necessary to confirm a good linearity of the response with carbon concentrations originating from various carbon-containing gases. When mixtures of carbon-containing gases at three different concentrations and the calibration curve of the FID response with the concentration converted into methane were used, a single linear calibration curve (correlation coefficient > 0.9999, 18 points) was obtained over four orders of magnitudes (to ~ 5000 µmol mol-1 as methane). The applicability of GC-r-FID was confirmed by determining carbon-containing gases in air and gas seeped from the seafloor samples. Because the results were comparable to those obtained by conventional GC-FID and GC-thermal conductivity detector, typically GC-r-FID with a single reference gas should be suitable for air monitoring.
科研通智能强力驱动
Strongly Powered by AbleSci AI