Evaluation of solid-phase microextraction for sampling of volatile organic sulfur compounds in air for subsequent gas chromatographic analysis with atomic emission detection

被引:73
作者
Haberhauer-Troyer, C [1 ]
Rosenberg, E [1 ]
Grasserbauer, M [1 ]
机构
[1] Vienna Univ Technol, Inst Analyt Chem, A-1060 Vienna, Austria
关键词
air analysis; extraction methods; volatile organic compounds; volatile sulfur compounds; organosulfur compounds;
D O I
10.1016/S0021-9673(99)00459-8
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
The use of solid-phase microextraction (SPME) followed by GC-AED (atomic emission detection) for the analysis of volatile organic sulfur compounds (methanethiol, dimethyl sulfide, isopropanethiol and isobutanethiol) in spiked air samples was investigated. Gaseous standard mixtures were generated by means of a permeation apparatus with stopped flow facilities to permit sampling of the analytes with the SPME fiber. Detection limits between 4 ppt for dimethyl sulfide and isobutanethiol and 50 ppt (v/v) for methanethiol were achieved for extraction with the Carboxen-PDMS (polydimethylsiloxane) fiber followed by GC-AED analysis. The comparison of the performance of the 100 mu m PDMS and the 75 mu m Carboxen-PDMS fiber coating demonstrates the superiority of the latter in terms of sensitivity and repeatability. Despite the principal applicability of SPME to sampling of organosulfur compounds, artifacts ape observed during analysis. Furthermore, the low storage stability, the dependence of the extraction efficiency on the relative humidity and the pronounced differences in sensitivity between fibers limit the usefulness of the method for quantitative on-site analysis. (C) 1999 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:305 / 315
页数:11
相关论文
共 21 条
[1]   SOLID-PHASE MICROEXTRACTION WITH THERMAL-DESORPTION USING FUSED-SILICA OPTICAL FIBERS [J].
ARTHUR, CL ;
PAWLISZYN, J .
ANALYTICAL CHEMISTRY, 1990, 62 (19) :2145-2148
[2]  
Belardi R.P., 1989, WATER POLLUT RES J C, V24, P179, DOI [10.2166/wqrj.1989.010, DOI 10.2166/WQRJ.1989.010]
[3]   ANALYSIS OF ENVIRONMENTAL AIR SAMPLES BY SOLID-PHASE MICROEXTRACTION AND GAS-CHROMATOGRAPHY ION-TRAP MASS-SPECTROMETRY [J].
CHAI, M ;
PAWLISZYN, J .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 1995, 29 (03) :693-701
[4]   A new porous-layer activated-charcoal-coated fused silica fiber: Application for determination of BTEX compounds in water samples using headspace solid-phase microextraction and capillary gas chromatography [J].
Djozan, D ;
Assadi, Y .
CHROMATOGRAPHIA, 1997, 45 (1) :183-189
[5]   Solid-phase microextraction coupled to gas chromatography: A new method for the analysis of organics in water [J].
Eisert, R ;
Levsen, K .
JOURNAL OF CHROMATOGRAPHY A, 1996, 733 (1-2) :143-157
[6]   New trends in solid-phase microextraction [J].
Eisert, R ;
Pawliszyn, J .
CRITICAL REVIEWS IN ANALYTICAL CHEMISTRY, 1997, 27 (02) :103-135
[7]   Calibration procedure for solid phase microextraction - gas chromatographic analysis of organic vapours in air [J].
Gorlo, D ;
Wolska, L ;
Zygmunt, B ;
Namiesnik, J .
TALANTA, 1997, 44 (09) :1543-1550
[8]  
Johansen SS, 1996, HRC-J HIGH RES CHROM, V19, P627, DOI 10.1002/jhrc.1240191107
[9]   DETERMINATION OF REDUCED SULFUR-COMPOUNDS IN AQUEOUS-SOLUTIONS USING GAS-CHROMATOGRAPHY FLAME PHOTOMETRIC DETECTION [J].
LECK, C ;
BAGANDER, LE .
ANALYTICAL CHEMISTRY, 1988, 60 (17) :1680-1683
[10]   Application of SPME/GC-MS to characterize metabolites in the biodesulfurization of organosulfur model compounds in bitumen [J].
MacPherson, T ;
Greer, CW ;
Zhou, E ;
Jones, AM ;
Wisse, G ;
Lau, PCK ;
Sankey, B ;
Grossman, MJ ;
Hawari, JL .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 1998, 32 (03) :421-426