Determination of antifouling compounds in marine sediments by solid-phase microextraction coupled to gas chromatography-mass spectrometry

被引:22
作者
Lambropoulou, DA [1 ]
Sakkas, VA [1 ]
Albanis, TA [1 ]
机构
[1] Univ Ioannina, Dept Chem, Lab Ind Chem, GR-45110 Ioannina, Greece
关键词
sediments; environmental analysis; solid-phase microextraction; water-acetone extraction; antifouling compounds;
D O I
10.1016/S0021-9673(03)01022-7
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Solid-phase microextraction (SPME) coupled to gas chromatography-mass spectrometry was applied to determine the antifouling biocides chlorothalonil, dichlofluanid, sea nine 211 and irgarol 1051 in marine sediments. Two experimental approaches were selected before the submission of the aqueous extracts to SPME prior to GC determination. The extraction of the biocides from the sediment samples was conducted using (a) water (containing 5%, v/v, acetone) and (b) acetone which was then diluted with water to give a 5% (v/v) content. The recommended procedures were found to be applicable for quantitative determination of the selected antifouling compounds in sediments with R.S.D.s below 17% and limits of detection ranging from 0.5 to 25 ng/g. The acetone/SPME procedure showed lower detection limits (0.5 to 6 ng/g) and R.S.D. values (<11%) as well as better recoveries (73 to 92%), proving that it could be successfully performed for the determination of antifouling compounds in sediment analysis, even in samples with high organic matter content. Both optimized water/SPME and acetone/SPME procedures were applied to the analysis of antifouling compounds in marine sediments and compared with the conventional liquid-liquid extraction with subsequent clean up by solid-phase extraction. (C) 2003 Elsevier B.V. All rights reserved.
引用
收藏
页码:1 / 8
页数:8
相关论文
共 27 条
[1]   Antifouling paint booster biocide contamination in Greek marine sediments [J].
Albanis, TA ;
Lambropoulou, DA ;
Sakkas, VA ;
Konstantinou, IK .
CHEMOSPHERE, 2002, 48 (05) :475-485
[2]   Preparation of antisera and development of a direct enzyme-linked immunosorbent assay for the determination of the antifouling agent Irgarol 1051 [J].
Ballesteros, B ;
Barcelo, D ;
Camps, F ;
Marco, MP .
ANALYTICA CHIMICA ACTA, 1997, 347 (1-2) :139-147
[3]   Solid-phase microextraction method for the determination of atrazine and four organophosphorus pesticides in soil samples by gas chromatography [J].
Bouaid, A ;
Ramos, L ;
Gonzalez, MJ ;
Fernández, P ;
Cámara, C .
JOURNAL OF CHROMATOGRAPHY A, 2001, 939 (1-2) :13-21
[4]   Environmental fate and effects of chlorothalonil: A Canadian perspective [J].
Caux, PY ;
Kent, RA ;
Fan, GT ;
Stephenson, GL .
CRITICAL REVIEWS IN ENVIRONMENTAL SCIENCE AND TECHNOLOGY, 1996, 26 (01) :45-93
[5]   Toxic effects of the antifouling agent Irgarol 1051 on periphyton communities in coastal water microcosms [J].
Dahl, B ;
Blanck, H .
MARINE POLLUTION BULLETIN, 1996, 32 (04) :342-350
[6]   Dynamic microwave-assisted extraction coupled on-line with solid-phase extraction:: determination of polycyclic aromatic hydrocarbons in sediment and soil [J].
Ericsson, M ;
Colmsjö, A .
JOURNAL OF CHROMATOGRAPHY A, 2002, 964 (1-2) :11-20
[7]  
ERNST W, 1996, ARCH ENV CONTAM TOXI, V57, P426
[8]   The TBT ban: Out of the prying pan into the fire? [J].
Evans, SM ;
Birchenough, AC ;
Brancato, MS .
MARINE POLLUTION BULLETIN, 2000, 40 (03) :204-211
[9]   Methods for selective determination of persistent organochlorine pesticide residues in water and sediments by capillary gas chromatography and electron-capture detection [J].
Fatoki, OS ;
Awofolu, RO .
JOURNAL OF CHROMATOGRAPHY A, 2003, 983 (1-2) :225-236
[10]   Toxicity evaluation of single and mixed antifouling biocides measured with acute toxicity bioassays [J].
Fernández-Alba, AR ;
Hernando, MD ;
Piedra, L ;
Chisti, Y .
ANALYTICA CHIMICA ACTA, 2002, 456 (02) :303-312