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SPME Applications Guide - Overbrook Scientific

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(New references added to the 7th edition are in bold) <strong>SPME</strong> Fiber /<br />

Analyte / Extraction<br />

Matrix Literature Reference Conditions Instrument<br />

compounds Lestremau, F.; Andersson, F.; Desauziers, V. *<br />

in air<br />

Determination of benzene, toluene, ethylbenzene and<br />

2117 BTEX in xylenes in air by <strong>SPME</strong>-GC-MS 75µm Carboxen GC-MS<br />

air Analytical & Bioanalytical Chem, 380, #5-6, 824-830 30 min sampling<br />

Tumbiolo, S.; Gal, J. -F.*; Maria, P. -C.; Zerbinati, O.<br />

<strong>SPME</strong> sampling of BTEX before GC/MS analysis:Examples of outdoor<br />

2174 BTEX in and indoor air quality measurements in public and private sites GC-MS<br />

air Annali di Chimica 95, #11-12, 757-766 (2005)<br />

Tumbiolo, S.; GAL, Jean-Francois; Maria, P.; Zerbinati, O.<br />

Use of <strong>SPME</strong> for the detection of acetic acid by ion-trap<br />

2118 Acetic acid GC-MS and application to indoor levels in museums GC-ITMS<br />

in air J. Chromatogr. A, 1067, #1-2, 331-336<br />

Godoi, Ana F.L.; Van Grieken, Rene; Van Vaeck, Luc<br />

Development of a sensitive methodology for the<br />

2119 Chloro- analysis of chlorobenzenes in air bycombination of 65µm PDMS-DVB GC-MS<br />

benzenes SPE and headspace <strong>SPME</strong> 65µm CW GC-ECD<br />

in air J. Chromatogr. A, 1045, #1-2, 189-196 headspace<br />

Ares,S; Barro,R; Cela,R; Garcia-Jares,C; Llompart,M<br />

Dynamic <strong>SPME</strong> for sampling of airborne sarin with<br />

2120 Sarin in Air GC-MS for rapid field detection and quantification Direct sampling of air GC-MS<br />

J. Sep. Sci., 27,#12, 1017-1022<br />

Hook, G.; Lepage, C; Miller, S.; Smith, P.<br />

Analysis of sulfur-containing compounds in ambient air<br />

2121 Sulfur compd using <strong>SPME</strong>-GC with pulsed FPD direct sampling GC-FPD<br />

in air Int. J. Environ. Anal. Chem., 84, #10, 749-760<br />

Li, Kwong-Chi; Shooter, David<br />

Determination of aniline in silica gel sorbent by one-step<br />

2122 Aniline in situ microwave assisted desorption coupled to 65µm PDMS-DVB GC-FID<br />

in air headspace <strong>SPME</strong> and GC-FID headspace<br />

Talanta, 64, #3, 650-654 3 min extraction<br />

Jen, Jen-Fon; Shih, Ton-Sheng; Yan, Cheing-Tong<br />

Propylene glycol vapor contamination in controlled<br />

2123 Popylene environment growth chambers: Toxicity to corn and headspace MD-GC-MS<br />

glycol in soybean plants<br />

air J. Environ. Sci. Health Part B, 40, #3, 443-448<br />

McConnell, Laura; Niu, Genhua; Reddy, Vangimalla R.<br />

Theory / Technique<br />

856 Volatiles<br />

An automated method for the determination of some volatile<br />

organic compounds in water samples after extraction by GC-ECD<br />

in water <strong>SPME</strong> and CGC-ECD analysis<br />

Rev. Port. Farm (2000) 50(4) 141-149<br />

Cunha, E.; Goncalves, C.; Alpendrurada, M. F. (Portuguese)<br />

2 VOCs, BTEX, PAHs<br />

Solid Phase MicroExtraction with Thermal Desorption Using<br />

Fused Silica Optical Fibers 56µm PDMS GC-FID,<br />

in water Anal. Chem. 62: 2145-2148 (1990) 2 min GC-ECD<br />

Arthur, C., Pawliszyn, J. stirring, salt added<br />

5 BTEX<br />

Solid Phase MicroExtraction: An Attractive Alternative<br />

Environmental Lab. 11, Dec/Jan 1992/1993 pp 10-15 100µm PDMS GC-FID<br />

in water Arthur, C., Killam, L., Chai, M., Buchholdz, K., Potter, D., 14 min<br />

Zhang, Z., Pawliszyn, J.<br />

Automation and Optimization of Solid Phase MicroExtraction<br />

stirring<br />

salt added<br />

9 BTEX Anal. Chem. 64: 1960-1966 (1992) 56µm & 100µm PDMS GC-FID<br />

in water Arthur, C., Killam, L., Buchholz, K., Pawliszyn, J. 2-40 min<br />

stirring, salt added<br />

2392 PAHs<br />

Automation of solid-phase microextraction on a 96-well plate format<br />

J. Chromatogr., A 1149, #2, 127-137 (2007-05-18 ) PDMS fibers<br />

in water Hutchinson, J. P.; Setkova, L.; Pawliszyn, J.<br />

Ambient temperature, unless otherwise indicated. 211

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