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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 />

Pawliszyn, J. and conditions<br />

<strong>Applications</strong> of Solid Phase Microextraction<br />

731 Reference book Edited by Janusz Pawliszyn<br />

RSC Chromatography Monographs<br />

732 Overview<br />

Theory of solid phase microextraction<br />

J. Chromatogr. Sci. (2000), 38(7), 270-278<br />

Pawliszyn, J.<br />

35 applications<br />

described<br />

Researchers are giving <strong>SPME</strong> a second look<br />

733 R&D Magazine, February 1999, 44-45<br />

Sample Preparation and Solid-Phase Extraction<br />

30:50<br />

Carboxen/DVB/PDMS<br />

headspace<br />

GC-FID<br />

251 Overview LC-GC 15: 1106, 1108, 1110-1113, 1116-1117 (1997) no fibers or<br />

Majors, R., Raynie, D. conditions shown<br />

252 Formaldehyde,<br />

Recent Advances in Solid Phase Microextraction<br />

LC-GC May Supplement, ppS41-S46 (1998) 65µm PDMS/DVB, GC-MS,<br />

surfactants in Lord, H., Pawliszyn, J. Carbowax/TPR fiber HPLC-UV<br />

air and water varied conditions<br />

2494 VOCs in air and<br />

Sample preparation for the analysis of volatile organic compounds in<br />

air and water matrices review article<br />

water matrices J. Chromatogr. A 1153, #1-2, 130-144 (JUN 15 2007)<br />

Demeestere, Kristof; Dewulf, Jo; De Witte, Bavo; Van Langenhove, H.<br />

2495 Review article<br />

Sample handling strategies for the determination of persistent trace<br />

organic contaminants from biota samples<br />

sample handling ANAL. CHIM. ACTA 590, #1, 1-16 (02 MAY 2007)<br />

methods Fidalgo-Used, N.; Blanco-Gonzalez, E.; Sanz-Medel, A.<br />

255 Thiophenes<br />

Application of <strong>SPME</strong>/GC-MS to Characterize Metabolites in<br />

the Biodesulfurization of Organosulfur Model Compounds 85µm polyacrylate GC-MS<br />

in water in Gitumen 20 min<br />

Environ. Sci. Technol. 32 (3): 421-426 (1998) immersion<br />

MacPherson, T., et al. pH 2<br />

Construction of an Interface for <strong>SPME</strong>-PC-SFC<br />

256 J. High Resolut. Chromatogr. 34 (10): 275-277 (1997)<br />

Medvedovici, A., Sandar, P.<br />

Automated In-Tube <strong>SPME</strong> Coupled to HPLC<br />

257 Phenylurea pesticides Anal. Chem., Vol. 69, No. 16, August 15, 1997, 3140-3147 Omegawax 250 HPLC-UV,<br />

in water Eisert, R., Pawliszyn, J. 25µL, 10 flush cycles 245nm<br />

258 PAHs<br />

Effect of Heating the Interface on Chromatographic<br />

Performance of <strong>SPME</strong> Coupled to HPLC 100µm PDMS HPLC-UV,<br />

in water Anal. Commun. 34 (11): 365-369 (1997) 60 min 254nm<br />

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

Effect of Heating the Interface on Chromatographic<br />

immersion<br />

heat desorb 22-180°C<br />

259 PAHs Performance of <strong>SPME</strong> Coupled to HPLC 100µm PDMS HPLC-UV,<br />

in water Analyst (Cambridge) 122 (11): 365-369 (1997) 60 min 254nm<br />

Daimon, H., Pawliszyn, J. immersion<br />

heat desorb 22-180°C<br />

Development of an improved heated interface for coupling <strong>SPME</strong> to<br />

2181 Heated interface high-performance liquid chromatography<br />

for HPLC J. Chromatogr. A, 1105, #1-2, 208-212 (2006)<br />

Alves, C.; Contadori, A..; Fernandes, C.; Lancas, F.; Neto, A.<br />

Santos; R., Jose C.<br />

<strong>SPME</strong> Combined with HPLC for the Determination of Metal Ions<br />

Ambient temperature, unless otherwise indicated. 218

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