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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 />

State of the art in the determination of MTBE in natural waters & soils<br />

2232 MTBE in water Crit. Rev. Anal. Chem.35 #4, 317-337 (2005) headspace FID<br />

and soil Aragon, P.; Atienza, J.; Herrero, M; M., Angel; Aragon, P.; Atienza, J.;<br />

Herrero, Ma. Asuncion; Maquieira, A.; Puchades, R.<br />

Sensitive method for determination of methyl tert-butyl ether (MTBE) in water by<br />

use of headspace-<strong>SPME</strong>/GC-MS.<br />

1475 MTBE in water Fresenius' Journal of Analytical Chemistry (2001) 371(4), 519-525<br />

Achten, Christine; Kolb, Axel; Puettmann, Wilhelm<br />

75um Carboxen/PDMS,<br />

headspace<br />

Methyl tert-butyl ether (MTBE) in finished drinking water in Germany<br />

2230 MTBE in Environ. Pollut 140 #2, 294-303 (2006)<br />

drinking water Kolb, Axel; Puttmann, Wilhelm<br />

GC-MS<br />

1480 MIB in drinking water<br />

Correlation of musty odor and 2-MIB in two drinking water treatment plants in<br />

South Taiwan.<br />

Science of the Total Environment (2002) 289(1-3), 225-235<br />

Lin, Tsair-Fuh; Kao, Hsiao-Pin; Wong, Jiun-Yue<br />

GC-MS<br />

1484<br />

1488<br />

1493<br />

Gas chromatographic determination of 2-hydroxy-4-methoxybenzophenone and<br />

octyldimethyl-p-aminobenzoic acid sunscreen agents in swimming pool and<br />

bathing waters by solid-phase microextraction<br />

2-hydroxy-4methoxybenzophenone<br />

and octyldimethyl-p-<br />

Journal of Chromatography A (2002) 967(2), 243-253<br />

aminobenzoic acid<br />

sunscreen agents in<br />

water<br />

Organochlorines in<br />

water<br />

Albanis, T. A.; Giokas, D. L.; Karayannis, M. I.; Lambropoulou, D. A.; Sakkas,<br />

V. A.<br />

Determination of organochlorides in water using solid-phase microextraction<br />

coupled to gas chromatography.<br />

100µm PDMS, 85µm<br />

Polyacrylate<br />

American Laboratory (2002) 34(17), 12-14 GC<br />

Ou Qing-Yu; Liang Bing; Li Ju-bai; Huang Min-jia<br />

Method based on solid-phase microextraction-high-performance liquid<br />

chromatography with UV and electrochemical detection to determine estrogenic<br />

compounds in water samples.<br />

Estrogenic compounds<br />

Journal of Chromatography A (2002) 964(1-2), 153-160<br />

in water<br />

Pocurull, E.; Borrull, F.; Marce, R. M.; Penalver, A.<br />

85um Polyacrylate HPLC-UV, HPLC-ED<br />

Application of <strong>SPME</strong> for the quantitative determination of methylmercury in<br />

aqueous solutions.<br />

1504 Mehylmercury in water Abstracts of Papers American Chemical Society (2002) 223(1-2) CHED 125<br />

1536<br />

1538<br />

Phthalic acid esters in<br />

water<br />

Phenolic compounds<br />

in water<br />

Moore, J. Taylor; McDowell, Derek R.; Ambler, Rich B.<br />

Development of a solid-phase microextraction method for the determination of<br />

phthalic acid esters in water.<br />

Analytica Chimica Acta (2002) 457(2), 211-223 Various fibers compared GC-ECD<br />

Holadova, Katerina; Hajslova, Jana; Poustka, Jan; Prokupkova, Gabriela<br />

Solid-phase microextraction coupled to high-performance liquid<br />

chromatography to determine phenolic compounds in water samples.<br />

Journal of Chromatography A (2002) 953(1-2), 79-87 85um Polyacrylate HPLC-UV<br />

Marce, R. M.; Borrull, F.; Penalver, A.; Pocurull, E.<br />

Vial position in the determination of chlorophenols in water by <strong>SPME</strong><br />

2154 Chlorophenols J. Chromatogr. A, 1103, #1, 29-34 (2006) headspace GC-MS<br />

in water Portillo, A; Prohibas, N.; Salvado, V.; Simonet, B. M.<br />

Determination of chlorophenols by solid-phase microextraction and liquid<br />

chromatography with electrochemical detection.<br />

Ambient temperature, unless otherwise indicated. 170

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