Related Experiment Video
Updated: Jan 11, 2026

Quantitative Detection of Trace Explosive Vapors by Programmed Temperature Desorption Gas Chromatography-Electron Capture Detector
Published on: July 25, 2014
Innovative active carbon fibers-based multipurpose thermal desorption tubes for the analysis of volatile organic
Elisabetta Santarelli1, Vicky Caponigro1, Paolo Benedetti2
1Department of Pharmacy, University of Salerno, Via Giovanni Paolo II, 132, 84084 Fisciano, Italy.
Abstract:
Active carbon fibers (ACFs) were evaluated as alternative sorbent materials for thermal desorption (TD) tubes in the analysis of volatile organic compounds (VOCs). Five commercially available ACFs, in both felt and fabric formats, were compared with conventional multi-bed tubes (MBTs) based on granular carbon adsorbents, with a focus on sampling from moisture-rich matrices, such as exhaust gas and exhaled breath. Sampling was conducted under both dry and saturated (100 % relative humidity) conditions using standard gas mixtures containing 39 VOCs from EPA TO-14 and 33 ozone precursors from the Photochemical Assessment Monitoring Station (PAMS) list. TD-gas chromatography-mass spectrometry (TD-GC-MS) was employed for compound analysis, with method parameters adapted for each sorbent type. ACFs demonstrated superior adsorption performances than MBTs, particularly for very volatile compounds (VVOCs) such as Freon-12, chloromethane, vinyl chloride, bromomethane, chloroethane, which are typically poorly retained by conventional TD tubes. ACF-F-20 achieved recovery rates above 80 % for 49 compounds and over 90 % for 37 compounds, even under humid conditions. In storage experiments, while most analytes remained stable for at least 7 days at 4 °C, highly volatile compounds such as chloromethane and bromomethane showed lower recoveries (34.2 % and 45.1 %, respectively). Application of exhaled breath analysis in one exemplary sample from healthy volunteer identified 19 VOCs, with 10 exhibiting significantly higher concentrations when sampled using ACF-T-20b compared to conventional MBTs. Notably, ACF-T-20b enabled enhanced capture of very volatile species, including methanol, propane, methylglyoxal, and hydroxylamine. These results demonstrate the potential of ACFs to improve VVOCs and VOCs sampling in high-humidity environments, broaden the detectable compound range, and reduce analytical cost and complexity in environmental and biomedical applications.
More Related Videos
09:19Capturing Actively Produced Microbial Volatile Organic Compounds from Human-Associated Samples with Vacuum-Assisted Sorbent Extraction
Published on: June 1, 2022
05:22Rapid Collection of Floral Fragrance Volatiles using a Headspace Volatile Collection Technique for GC-MS Thermal Desorption Sampling
Published on: December 10, 2019
Related Concept Videos
Gas Chromatography: Types of Detectors-II
Gas Chromatography: Types of Detectors-I
TCD is the earliest and most widely used detector that operates by measuring the changes in the thermal conductivity of the carrier gas. When a sample compound enters the detector,...
Volatilization
Supercritical Fluid Chromatography
SFC utilizes a supercritical fluid mobile phase,...
Gas Chromatography: Sample Injection Systems
Two primary injection methods are used...
Silica Gel Column Chromatography: Overview
Polar components tend to bind strongly to the silica gel, causing them to move slowly through the column. In contrast, nonpolar compounds...