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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<br />

Analysis of Substituted Benzene Compounds in<br />

Conditions Instrument<br />

6 BTEX, gasoline Groundwater Using <strong>SPME</strong> 56µm PDMS GC-FID<br />

in water J. Env. Sci. Technol. 26: 979-983 (1992) 2-6 min<br />

Arthur, C., Potter, D., Lim, M., Motlagh, S.,<br />

Killam, L., Pawliszyn, J.<br />

stirring<br />

2616 BTEX compounds<br />

Determination of benzene, toluene, ethylbenzene, xylenes in water at<br />

sub-ng l(-1) levels by <strong>SPME</strong> coupled to cryo-trap GC-MS 75µm Carboxen GC-MS<br />

in water Chemosphere 69, #9, 1381-1387 (NOV 2007) 15 min @ 25°C<br />

Lee, Maw-Rong; Chang, Chia-Min; Dou, Jianpeng sat. salt<br />

7 BTEX compounds<br />

Dynamics of Organic Compounds Extraction from<br />

Water Using Liquid-Coated Fused Silica Fibers 56µm PDMS GC-FID<br />

in water Anal. Chem. 64: 1187-1199 (1992) 2-6 min<br />

Louch, D., Motlagh, S., Pawliszyn, J. stirring<br />

10 BTEX compounds<br />

Detection of Substituted Benzenes in Water at the pg/mL<br />

Level Using Solid Phase Microextraction and 100µm PDMS GC-FID<br />

in water GC-Ion Trap Mass Spectrometer 30 min<br />

J. Chromatogr. 625: 247-255 (1992)<br />

Potter, D., Pawliszyn, J.<br />

stirring<br />

11 Organics<br />

Environmental Analysis of Organic Compounds in<br />

Water Using Solid Phase Microextraction 100µm PDMS GC-MS<br />

in water J. High Res. Chromatogr. 15: 741-744 (1992) 14 min<br />

Arthur, C., Pratt, K., Belardi, R., Motlagh, S., Pawliszyn, J. stirring<br />

14 Phenols<br />

Determination of Phenols by <strong>SPME</strong> and GC Analysis<br />

J. Environ. Sci. Technol. 27 (13): 2844-2848 (1993) 85µm polyacrylate GC-FID, -MS<br />

in water Buchholz, K., Pawliszyn, J. 60 min<br />

stirring<br />

salt added, pH 2<br />

Determination of Phenolic Compounds in Waste Water<br />

230 Phenols by Solid-Phase Microextraction GC-MS<br />

in water Fresenius’ J. Anal. Chem. 357: 326-332 (1997)<br />

Moeder, M., Schrader, S., Franck, U., Popp, P.<br />

670 Phenols<br />

Sorption of phenols to dissolved organic matter<br />

investigated by <strong>SPME</strong><br />

in water Sci. Total Environ. (2000), 253(1-3), 63-74<br />

Ohlenbusch, G., Kumke, M., Frimmel, F.<br />

922 Phenolic compounds<br />

<strong>SPME</strong> coupled to liquid chromatography for the analysis<br />

of phenolic compounds in water 50µm CW/TPR HPLC<br />

in water J. Chromatogr. A (2001) 923(1-2), p45-52 65µm DVB/PDMS<br />

Toledo, E., Prat, M., Alpendurada, M. 30min immersed<br />

salt added, pH 2<br />

951 Chlorinated phenolics<br />

Application of <strong>SPME</strong> in pre-concentration of chlorinated<br />

phenolic compounds from cellulose bleaching effluents<br />

in water J. Sep. Sci (2001), 24(4), 309-312<br />

Dos Santos, L.; Vale, M.; De Araujo, M.<br />

Bertrand C.; Caramao, E.; Oliveira, E.<br />

Recent Advances in Solid-Phase Microextraction<br />

15 VOCs, phenols, (<strong>SPME</strong>) of Environmental Samples 100µm PDMS GC-MS<br />

semivolatiles Proceedings Water Quality Technology Conference 5 min (volatiles)<br />

in water Miami, FL, Nov. 1993 10 min (semivolatiles)<br />

Arthur, C., Pratt, K., Belardi, R., Motlagh, S., Pawliszyn, J. headspace<br />

stirring, salt added<br />

671 4-Quinolones<br />

Influence of pH and other modifying factors on the<br />

distribution behaviors of 4-Quinolones to Solid phase and CW/TPR HPLC<br />

in water humic acids studied by "negligible-depletion" <strong>SPME</strong>-HPLC 10min. 260NM<br />

Environ Sci Technol. 2000, 34, 4989-4994 pH 3-5.5<br />

Lutzhoft, H. Vaes, W., Freidig, A., Halling-Sorrensen, B.<br />

Hermens, J.<br />

stirred<br />

Ambient temperature, unless otherwise indicated. 142

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