Determination of 4-nonylphenol in water samples using 4-(2,6-dimethylhept-3-yl)phenol as new internal standard

被引:15
作者
Fischer, Axel R. [1 ]
Lan, Nham Thi Phuong [2 ]
Wiedemann, Cornelia [1 ]
Heide, Petra [1 ]
Werner, Peter [1 ]
Schmidt, Arndt W. [3 ]
Theumer, Gabriele [3 ]
Knoelker, Hans-Joachim [3 ]
机构
[1] Tech Univ Dresden, Inst Management & Contaminated Site Treatment, D-01796 Pirna, Germany
[2] Hanoi Univ Sci, Hanoi, Vietnam
[3] Tech Univ Dresden, Dept Chem, D-01069 Dresden, Germany
关键词
Nonylphenol isomers; Internal standard; Gas chromatography-mass spectrometry; CHROMATOGRAPHY-MASS SPECTROMETRY; SOLID-PHASE EXTRACTION; GAS-CHROMATOGRAPHY; NONYLPHENOL ISOMERS; BISPHENOL-A; SEWAGE-SLUDGE; WASTE-WATER; TREATMENT PLANTS; TRACE ANALYSIS; P-NONYLPHENOL;
D O I
10.1016/j.chroma.2010.02.063
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
A new method for determining the endocrine disrupting substance 4-nonylphenol (technical grade = mixture of isomers, 4-NP) from water samples has been developed by using 4-(2,6-dimethylhept-3-yl)phenol (4-sec-NP) as model compound. This branched monoalkylphenol is shown to serve as internal standard (IS) for the determination of technical 4-nonylphenol. To the best of our knowledge, 4-(2,6-dimethylhept-3-yl)phenol (racemic mixture) is a newly synthesized 4-nonylphenol isomer and has not been described elsewhere. Recoveries have been determined by analyzing spiked water samples from distilled water, river water and wastewater. Following acetylation, the compounds were enriched via solid phase extraction (SPE). Analyses of the compounds were performed by capillary column gas chromatography/mass spectrometry (GC/MS), operating in selected ion-monitoring (SIM) mode. The recovery of technical 4-NP using either the newly prepared 4-sec-NP or 4-n-nonylphenol (4-n-NP) as IS have been compared. 4-sec-NP showed slightly better results. However, in the first series of experiments using wastewater, the yields for the derivatization of the two standard compounds were remarkably different. The yield for derivatization of 4-n-NP was approximately 20%, probably due to the difficult matrix of the wastewater. In contrast, the yield for the derivatization of 4-sec-NP was considerably higher (approximately 63%). This problem can be solved by increasing the concentration of the reagent used for derivatization. For better control of the clean-up process, we recommend application of 4-sec-NP as internal standard, at least in water samples with complex matrices (e.g., high content of hydroxylated compounds). (C) 2010 Elsevier B.V. All rights reserved.
引用
收藏
页码:2950 / 2955
页数:6
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