Study of different Chemcatcher configurations in the monitoring of nonylphenol ethoxylates and nonylphenol in aquatic environment

被引:9
作者
Ahkola, Heidi [1 ]
Herve, Sirpa [1 ]
Knuutinen, Juha [2 ]
机构
[1] Finnish Environm Inst SYKE, Jyvaskyla 40014, Finland
[2] Univ Jyvaskyla, Dept Chem, Jyvaskyla 40014, Finland
关键词
Chemcatcher; Nonylphenol; Nonylphenol ethoxylates; PASSIVE SAMPLING SYSTEM; ORGANIC POLLUTANTS; ORGANOTIN COMPOUNDS; SURFACE-WATER; RIVER WATER; CALIBRATION; PERFORMANCE; METALS; POLAR; BIODEGRADATION;
D O I
10.1007/s11356-014-2828-5
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The main aim of the European Union Water Framework Directive (WFD) (2000/60/EC) is to protect rivers, lakes, coastal waters and groundwaters (EC 2000). The implementation of the WFD requires monitoring the concentration levels of several priority pollutants such as nonylphenol ethoxylates (NPEOs) and nonylphenol (NP) in the area of EU. The present practices for determining the concentration levels of various pollutants are, in many respects, insufficient, and there is an urgent need to develop more cost-effective sampling methods. A passive sampling tool named Chemcatcher was tested for monitoring NPEOs and NP in aqueous media. These environmentally harmful substances have been widely used in different household and industrial applications, and they affect aquatic ecosystems, for example, by acting as endocrine disrupting compounds. The suitability of different receiving phases which were sulfonated styrene-divinylbenzene reversed phase polymer (SDB-RPS), standard styrene-divinyl benzene polymer (SDB-XC) and C-18 (octadecyl) was assessed in laboratory and field trials. The effect of a diffusion membrane on the accumulation of studied compounds was also investigated. The SDB-XC and C-18 receiving phases collected the NPEOs and NP most effectively. The water flow affected the accumulation factor of the studied substances in the field trials, and the water concentrations calculated using sampling rates were tenfold lower than those measured with conventional spot sampling. The concentration of the analytes in spot samples taken from the sampling sites might be higher because in that case, the particle-bound fraction is also measured. The NPEOs readily attach to suspended matter, and therefore, the total concentration of such compounds in water is much higher. Also, the spot samples were not taken daily but once a week, while the passive samplers collected the compounds continuously for 2- or 4-week time periods. This may cause differences when comparing the results of those two methods as well. Both techniques can be applied for monitoring the concentration levels at different sampling sites, but the calculated and measured analyte concentrations in surrounding water are not necessarily comparable with each other. More experiments are still needed to study the effect of hydrological issues and humic substances on the accumulation of chemicals. However, the Chemcatcher passive sampler gives valuable information about the mean concentration levels of studied compounds during 2- or 4-week sampling period. This is important for comparison of annual monitoring results, especially in sampling sites with rapidly fluctuating concentrations.
引用
收藏
页码:9182 / 9192
页数:11
相关论文
共 28 条
  • [1] Calibration and use of the Chemcatcher® passive sampler for monitoring organotin compounds in water
    Aguilar-Martinez, R.
    Palacios-Corvillo, M. A.
    Greenwood, R.
    Mills, G. A.
    Vrana, B.
    Gomez-Gomez, M. M.
    [J]. ANALYTICA CHIMICA ACTA, 2008, 618 (02) : 157 - 167
  • [2] Application of Chemcatcher passive sampler for monitoring levels of mercury in contaminated river water
    Aguilar-Martinez, Rocio
    Milagros Gomez-Gomez, M.
    Greenwood, Richard
    Mills, Graham A.
    Vrana, Branislav
    Palacios-Corvillo, Maria A.
    [J]. TALANTA, 2009, 77 (04) : 1483 - 1489
  • [3] Assessment of Chemcatcher passive sampler for the monitoring of inorganic mercury and organotin compounds in water
    Aguilar-Martinez, Rocio
    Greenwood, Richard
    Mills, Graham A.
    Vrana, Branislav
    Palacios-Corvillo, Maria A.
    Gomez-Gomez, Maria M.
    [J]. INTERNATIONAL JOURNAL OF ENVIRONMENTAL ANALYTICAL CHEMISTRY, 2008, 88 (02) : 75 - 90
  • [4] Overview of passive Chemcatcher sampling with SPE pretreatment suitable for the analysis of NPEOs and NPs
    Ahkola, Heidi
    Herve, Sirpa
    Knuutinen, Juha
    [J]. ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 2013, 20 (03) : 1207 - 1218
  • [5] Evaluation of the Chemcatcher and DGT passive samplers for monitoring metals with highly fluctuating water concentrations
    Allan, Ian J.
    Knutsson, Jesper
    Guigues, Nathalie
    Mills, Graham A.
    Fouillac, Anne-Marie
    Greenwood, Richard
    [J]. JOURNAL OF ENVIRONMENTAL MONITORING, 2007, 9 (07): : 672 - 681
  • [6] A "toolbox" for biological and chemical monitoring requirements for the European Union's Water Framework Directive
    Allan, IJ
    Vrana, B
    Greenwood, R
    Mills, GA
    Roig, B
    Gonzalez, C
    [J]. TALANTA, 2006, 69 (02) : 302 - 322
  • [7] Performance of an in situ passive sampling system for metals in stormwater
    Blom, LB
    Morrison, GM
    Kingston, J
    Mills, GA
    Greenwood, R
    Pettersson, TJR
    Rauch, S
    [J]. JOURNAL OF ENVIRONMENTAL MONITORING, 2002, 4 (02): : 258 - 262
  • [8] Determination of the uptake and release rates of multifamilies of endocrine disruptor compounds on the polar C18 Chemcatcher. Three potential performance reference compounds to monitor polar pollutants in surface water by integrative sampling
    Camilleri, J.
    Morin, N.
    Miege, C.
    Coquery, M.
    Cren-Olive, C.
    [J]. JOURNAL OF CHROMATOGRAPHY A, 2012, 1237 : 37 - 45
  • [9] Evaluation of the aquatic passive sampler Chemcatcher for the monitoring of highly hydrophobic compounds in water
    de la Cal, A.
    Kuster, M.
    de Alda, M. Lopez
    Eljarrat, E.
    Barcelo, D.
    [J]. TALANTA, 2008, 76 (02) : 327 - 332
  • [10] Occurrence and abundance of dicarboxylated metabolites of nonylphenol polyethoxylate surfactants in treated sewages
    Di Corcia, A
    Cavallo, R
    Crescenzi, C
    Nazzari, M
    [J]. ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2000, 34 (18) : 3914 - 3919