Michal Bucha, Dominika Lewicka-Szczebak, Piotr Wójtowicz
{"title":"利用气相色谱系统同时测量大气中的温室气体(CH4、CO2 和 N2O","authors":"Michal Bucha, Dominika Lewicka-Szczebak, Piotr Wójtowicz","doi":"10.5194/egusphere-2024-2125","DOIUrl":null,"url":null,"abstract":"<strong>Abstract.</strong> This article presents a simple method for determining greenhouse gases (CH<sub>4</sub>, CO<sub>2</sub>, N<sub>2</sub>O) at ambient atmospheric levels using a chromatographic system. The novelty of the presented method is the application of a Carboxen 1010 PLOT capillary column for separation of trace gases – CH<sub>4</sub>, CO<sub>2</sub> and N<sub>2</sub>O – from air samples and their detection using a barrier discharge ionisation detector (BID). Simultaneously, a parallel molecular sieve column connected to a thermal conductivity detector (TCD) allowed the determination of CH<sub>4</sub>, N<sub>2</sub> and O<sub>2</sub> concentrations from 0.1 to 100 %. The system was equipped with an autosampler transferring the samples without air contamination thanks to a vacuum pump-inert gas flushing option. Method validation was performed using commercial gas standards and undertaking a comparison measurement with a reference method: optical methods applying Picarro isotope and concentration instruments with cavity ring-down spectroscopy for CO<sub>2</sub>, CH<sub>4</sub> and N<sub>2</sub>O. A three-day continuous measurement series of the lowest GHG concentrations in ambient air and tests of typical vial sample measurements with increased GHG concentrations were performed. The advantage of this method is that the system is easy to set up and allows for simultaneous detection and analysis of the main GHGs in their ambient concentrations using one GC column and one detector, thereby omitting the need for an electron capture detector (ECD) containing radiogenic components for N<sub>2</sub>O analysis and a flame ionisation detector (FID) with a methaniser for low-concentration CO<sub>2</sub> samples. The simplification of the system reduces analytical costs, facilitates instrument maintenance and improves measurement robustness.","PeriodicalId":8619,"journal":{"name":"Atmospheric Measurement Techniques","volume":"31 1","pages":""},"PeriodicalIF":3.2000,"publicationDate":"2024-09-03","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Simultaneous measurement of greenhouse gases (CH4, CO2 and N2O) at atmospheric levels using a gas chromatography system\",\"authors\":\"Michal Bucha, Dominika Lewicka-Szczebak, Piotr Wójtowicz\",\"doi\":\"10.5194/egusphere-2024-2125\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<strong>Abstract.</strong> This article presents a simple method for determining greenhouse gases (CH<sub>4</sub>, CO<sub>2</sub>, N<sub>2</sub>O) at ambient atmospheric levels using a chromatographic system. The novelty of the presented method is the application of a Carboxen 1010 PLOT capillary column for separation of trace gases – CH<sub>4</sub>, CO<sub>2</sub> and N<sub>2</sub>O – from air samples and their detection using a barrier discharge ionisation detector (BID). Simultaneously, a parallel molecular sieve column connected to a thermal conductivity detector (TCD) allowed the determination of CH<sub>4</sub>, N<sub>2</sub> and O<sub>2</sub> concentrations from 0.1 to 100 %. The system was equipped with an autosampler transferring the samples without air contamination thanks to a vacuum pump-inert gas flushing option. Method validation was performed using commercial gas standards and undertaking a comparison measurement with a reference method: optical methods applying Picarro isotope and concentration instruments with cavity ring-down spectroscopy for CO<sub>2</sub>, CH<sub>4</sub> and N<sub>2</sub>O. A three-day continuous measurement series of the lowest GHG concentrations in ambient air and tests of typical vial sample measurements with increased GHG concentrations were performed. The advantage of this method is that the system is easy to set up and allows for simultaneous detection and analysis of the main GHGs in their ambient concentrations using one GC column and one detector, thereby omitting the need for an electron capture detector (ECD) containing radiogenic components for N<sub>2</sub>O analysis and a flame ionisation detector (FID) with a methaniser for low-concentration CO<sub>2</sub> samples. 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Simultaneous measurement of greenhouse gases (CH4, CO2 and N2O) at atmospheric levels using a gas chromatography system
Abstract. This article presents a simple method for determining greenhouse gases (CH4, CO2, N2O) at ambient atmospheric levels using a chromatographic system. The novelty of the presented method is the application of a Carboxen 1010 PLOT capillary column for separation of trace gases – CH4, CO2 and N2O – from air samples and their detection using a barrier discharge ionisation detector (BID). Simultaneously, a parallel molecular sieve column connected to a thermal conductivity detector (TCD) allowed the determination of CH4, N2 and O2 concentrations from 0.1 to 100 %. The system was equipped with an autosampler transferring the samples without air contamination thanks to a vacuum pump-inert gas flushing option. Method validation was performed using commercial gas standards and undertaking a comparison measurement with a reference method: optical methods applying Picarro isotope and concentration instruments with cavity ring-down spectroscopy for CO2, CH4 and N2O. A three-day continuous measurement series of the lowest GHG concentrations in ambient air and tests of typical vial sample measurements with increased GHG concentrations were performed. The advantage of this method is that the system is easy to set up and allows for simultaneous detection and analysis of the main GHGs in their ambient concentrations using one GC column and one detector, thereby omitting the need for an electron capture detector (ECD) containing radiogenic components for N2O analysis and a flame ionisation detector (FID) with a methaniser for low-concentration CO2 samples. The simplification of the system reduces analytical costs, facilitates instrument maintenance and improves measurement robustness.
期刊介绍:
Atmospheric Measurement Techniques (AMT) is an international scientific journal dedicated to the publication and discussion of advances in remote sensing, in-situ and laboratory measurement techniques for the constituents and properties of the Earth’s atmosphere.
The main subject areas comprise the development, intercomparison and validation of measurement instruments and techniques of data processing and information retrieval for gases, aerosols, and clouds. The manuscript types considered for peer-reviewed publication are research articles, review articles, and commentaries.