PAL SPME Arrow—evaluation of a novel solid-phase microextraction device for freely dissolved PAHs in water
Author:
Funder
CTC Analytics AG
Publisher
Springer Science and Business Media LLC
Subject
Biochemistry,Analytical Chemistry
Link
http://link.springer.com/content/pdf/10.1007/s00216-015-9187-z.pdf
Reference29 articles.
1. Belardi RP, Pawliszyn JB (1989) The application of chemically modified fused silica fibers in the extraction of organics from water matrix samples and their rapid transfer to capillary columns. Water Pollut Res J Can 24:179–191
2. Spietelun A, Kloskowski A, Chrzanowski W, Namieśnik J (2012) Understanding solid-phase microextraction: key factors influencing the extraction process and trends in improving the technique. Chem Rev (Washington, DC, U S) 113(3):1667–1685
3. Laaks J, Jochmann MA, Schmidt TC (2012) Solvent-free microextraction techniques in gas chromatography. Anal Bioanal Chem 402(2):565–571
4. García-Falcón MS, Cancho-Grande B, Simal-Gándara J (2004) Stirring bar sorptive extraction in the determination of PAHs in drinking waters. Water Res 38(7):1679–1684
5. Huang S, He S, Xu H, Wu P, Jiang R, Zhu F, Luan T, Ouyang G (2015) Monitoring of persistent organic pollutants in seawater of the Pearl River Estuary with rapid on-site active SPME sampling technique. Environ Pollut 200:149–158
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