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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 />

Use of <strong>SPME</strong> with Ion Mobility Spectrometry<br />

Conditions<br />

stirring, KNO3 added<br />

Instrument<br />

182 Anal. Lett. 30 (7): 20-22 (1997)<br />

Orzechowsa, G., Poziomek, E., Tersol, V.<br />

GC-MS<br />

2610 VOCs<br />

Occurrence of volatile organic compounds (VOCs) in Liverpool<br />

Bay, Irish Sea headspace GC-MS<br />

in seawater Mar. Pollut. Bull. 54, #11, 1742-1753<br />

Bravo-Linares, C.M.; Loyola-Sepulveda, R.H.; Mudge, S.M<br />

228 VOCs<br />

<strong>SPME</strong> of Volatile Organic Compounds. Estimation of the<br />

Sorption Equilibrium from the Kovats Index Effect of Salinity 100µm PDMS GC-FID<br />

in seawater and Humic Acids and the Study of the Kinetics by the 45 min<br />

Development of an "Agitated/Static Layer" Model immersion<br />

J. Chromatogr. A 761: 205-217 (1997) stirring<br />

Dewulf, J., Everaert, M., Van-Langenhove, H. salt added<br />

840 Squalene<br />

Determination of squalene in seawater by <strong>SPME</strong>-GC-MS and<br />

the concentration variation of squalene in redtide seawater. 100µm PDMS GC-MS<br />

in seawater Fenxi Huaxue (2000) 28(11) 1326-1330 45 min<br />

Zhao, M. Q.; Li, G. K.; Luan, T. G.; Zhang, Z. X.<br />

Development of a Prototype System for Quasi-Continuous<br />

immersion<br />

stirring<br />

165 Triazines, organic Analysis of Organic Contaminants in Surface or Sewage 85µm polyacrylate GC-ECD, -FID<br />

pesticides Water Based on In-Line Coupling of <strong>SPME</strong> to GC 10 min<br />

in sewage water J. Chromatogr. A 737 (1): 59-65 (1996)<br />

Eisert, R., Levsen, K.<br />

300mL/min flow<br />

166 Pesticides<br />

Design of Automated <strong>SPME</strong> for Trace Analysis of<br />

Organic Compounds in Aqueous Samples 100µm PDMS GC-FID<br />

in water J. Chromatogr. A 776: 293-303 (1997) 30 min<br />

Eisert, R., Pawliszyn, J. stirring<br />

184 BTEX,<br />

Sample Preparation for GC with SPE & <strong>SPME</strong><br />

Chromatogr. 37: 205-236 (1997) 100µm PDMS GC-FID<br />

pesticides Penton, Z. 2-20 min<br />

in water<br />

Porous-Layer Solid-Phase Microextraction Using Silica<br />

immersion, stirring<br />

salt added<br />

236 Aromatic Bonded Phase 30µm C8 silica bonded GC-FID<br />

hydrocarbons Anal. Chem. 69: 190-195 (1997) metal fiber<br />

in water Liu, Y., Shen, Y., Lee, M.<br />

High Temperature Water Extraction Combined with <strong>SPME</strong><br />

20 min<br />

stirring<br />

189 PAHs in Anal. Commun. 33: 421-424 (1996) 30µm PDMS GC-FID<br />

water extract Daimon, H., Pawliszyn, J.<br />

Initial Bandwidth Resulting from Splitless and Solid-Phase<br />

70 min<br />

stirring<br />

220 C6-C11 hydrocarbons Microextraction Gas Chromatographic Injections 100µm PDMS GC-FID<br />

in water J. High Res. Chromatogr. 20 (2): 77-80 (1997) 10 min<br />

Snow, N., Okeyo, P.<br />

Optimizing Split/Splitless Injection Port Parameters for <strong>SPME</strong><br />

immersion<br />

stirring<br />

138 PAHs in J. Chromatogr. A 740 (1): 139-145 (1996) 7µm & 100µm PDMS GC-FID<br />

water Langenfeld, J., Hawthorne, S., Miller, D.<br />

Nitro Musks in Cosmetic Products: Determination by<br />

5 hr<br />

immersion, stirring<br />

211 Nitro musk compounds Headspace <strong>SPME</strong> and GC with Atomic Emission Detection: 100µm PDMS GC-AID<br />

in cosmetic products Dynamics of Organic Compound Extraction from Water, 1-60 min<br />

Using Liquid-Coated Fused Silica Fibers<br />

Chromatogrphia 45; 138-144 (1997)<br />

Struppe, C., Schaefer, B., Engewald, W.<br />

headspace<br />

Dynamics of Organic Compound Extraction from Water, Using<br />

Ambient temperature, unless otherwise indicated. 216

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