Experimental Estimation of 44 Pharmaceutical Polar Organic Chemical Integrative Sampler Sampling Rates in an Artificial River under Various Flow Conditions.


Journal

Environmental toxicology and chemistry
ISSN: 1552-8618
Titre abrégé: Environ Toxicol Chem
Pays: United States
ID NLM: 8308958

Informations de publication

Date de publication:
05 2020
Historique:
received: 20 11 2019
revised: 12 12 2019
accepted: 19 03 2020
pubmed: 31 3 2020
medline: 22 12 2020
entrez: 31 3 2020
Statut: ppublish

Résumé

The present study pertains to a polar organic chemical integrative sampler (POCIS) laboratory calibration to estimate the sampling rates for 44 pharmaceuticals featuring a wide range of polarity (-0.6 < octanol/water partition coefficient [log K

Identifiants

pubmed: 32222997
doi: 10.1002/etc.4717
doi:

Substances chimiques

Organic Chemicals 0
Pharmaceutical Preparations 0
Water Pollutants, Chemical 0

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

1186-1195

Informations de copyright

© 2020 SETAC.

Références

Ahrens L, Daneshvar A, Lau AE, Kreuger J. 2015. Characterization of five passive sampling devices for monitoring of pesticides in water. J Chromatogr A 1405:1-11.
Allan IJ, Vrana B, Greenwood R, Mills GA, Knutsson J, Holmberg A, Guigues N, Fouillac A-M, Laschi S. 2006. Strategic monitoring for the European Water Framework Directive. Trends Anal Chem 25:704-715.
Alvarez DA, Huckins JN, Petty JD, Jones-Lepp T, Stuer-Lauridsen F, Getting DT, Goddard JP, Gravell A. 2007. Tool for monitoring hydrophilic contaminants in water: Polar organic chemical integrative sampler (POCIS). In Greenwood R, Mills G, Vrana B, eds, Comprehensive Analytical Chemistry, Vol 48-Passive Sampling Techniques in Environmental Monitoring. Elsevier, Amsterdam, The Netherlands, pp 171-197.
Alvarez DA, Petty JD, Huckins JN, Jones-Lepp TL, Getting DT, Goddard JP, Manahan SE. 2004. Development of a passive, in situ, integrative sampler for hydrophilic organic contaminants in aquatic environments. Environ Toxicol Chem 23:1640-1648.
Amdany R, Chimuka L, Cukrowska E. 2014. Determination of naproxen, ibuprofen and triclosan in wastewater using the polar organic chemical integrative sampler (POCIS): A laboratory calibration and field application. Water SA 40:407-414.
Arditsoglou A, Voutsa D. 2008. Passive sampling of selected endocrine disrupting compounds using polar organic chemical integrative samplers. Environ Pollut 156:316-324.
Association Française de Normalisation. 2009. Qualité de l'eau: Protocole d’évaluation initiale des performances d'une méthode dans un laboratoire. Paris, France.
Bailly E, Levi Y, Karolak S. 2013. Calibration and field evaluation of polar organic chemical integrative sampler (POCIS) for monitoring pharmaceuticals in hospital wastewater. Environ Pollut 174:100-105.
Bartelt-Hunt SL, Snow DD, Damon-Powell T, Brown DL, Prasai G, Schwarz M, Kolok AS. 2011. Quantitative evaluation of laboratory uptake rates for pesticides, pharmaceuticals, and steroid hormones using POCIS. Environ Toxicol Chem 30:1412-1420.
Bäuerlein PS, Mansell JE, Ter Laak TL, De Voogt P. 2012. Sorption behavior of charged and neutral polar organic compounds on solid phase extraction materials: Which functional group governs sorption? Environ Sci Technol 46:954-961.
Bayen S, Segovia E, Loh LL, Burger DF, Eikaas HS, Kelly BC. 2014. Application of Polar Organic Chemical Integrative Sampler (POCIS) to monitor emerging contaminants in tropical waters. Sci Total Environ 482-483:15-22.
Belles A, Pardon P, Budzinski H. 2014a. Development of an adapted version of polar organic chemical integrative samplers (POCIS-Nylon). Anal Bioanal Chem 406:1099-1110.
Belles A, Tapie N, Pardon P, Budzinski H. 2014b. Development of the performance reference compound approach for the calibration of “polar organic chemical integrative sampler” (POCIS). Anal Bioanal Chem 406:1131-1140.
Booij K, Maarsen NL, Theeuwen M, van Bommel R. 2017. A method to account for the effect of hydrodynamics on polar organic compound uptake by passive samplers. Environ Toxicol Chem 36:1517-1524.
Booij K, Sleiderink HM, Smedes F. 1998. Calibrating the uptake kinetics of semipermeable membrane devices using exposure standards. Environ Toxicol Chem 17:1236-1245.
Buzier R, Charriau A, Corona D, Lenain J-F, Fondanèche P, Joussein E, Poulier G, Lissalde S, Mazzella N, Guibaud G. 2014. DGT-labile As, Cd, Cu and Ni monitoring in freshwater: Toward a framework for interpretation of in situ deployment. Environ Pollut 192:52-58.
Charlestra L, Amirbahman A, Courtemanch DL, Alvarez DA, Patterson H. 2012. Estimating pesticide sampling rates by the polar organic chemical integrative sampler (POCIS) in the presence of natural organic matter and varying hydrodynamic conditions. Environ Pollut 169:98-104.
Di Carro M, Bono L, Magi E. 2014. A simple recirculating flow system for the calibration of polar organic chemical integrative samplers (POCIS): Effect of flow rate on different water pollutants. Talanta 120:30-33.
Djomte VT, Taylor RB, Chen S, Booij K, Chambliss CK. 2018. Effects of hydrodynamic conditions and temperature on polar organic chemical integrative sampling rates. Environ Toxicol Chem 37:2331-2339.
European Commission. 2013. Directive 2013/39/EU of the European Parliament and of the Council of 12 August 2013 amending Directives 2000/60/EC and 2008/105/EC as regards priority substances in the field of water policy. Official J Eur Union L226:1-17.
Fauvelle V, Mazzella N, Delmas F, Madarassou K, Eon M, Budzinski H. 2012. Use of mixed-mode ion exchange sorbent for the passive sampling of organic acids by polar organic chemical integrative sampler (POCIS). Environ Sci Technol 46:13344-13353.
Garmo ØA, Naqvi KR, Røyset O, Steinnes E. 2006. Estimation of diffusive boundary layer thickness in studies involving diffusive gradients in thin films (DGT). Anal Bioanal Chem 386:2233-2237.
Guibal R, Lissalde S, Brizard Y, Guibaud G. 2018a. Semi-continuous pharmaceutical and human tracer monitoring by POCIS sampling at the watershed-scale in an agricultural rural headwater river. J Hazard Mater 360:106-114.
Guibal R, Lissalde S, Charriau A, Guibaud G. 2015a. Improvement of POCIS ability to quantify pesticides in natural water by reducing polyethylene glycol matrix effects from polyethersulfone membranes. Talanta 144:1316-1323.
Guibal R, Lissalde S, Charriau A, Poulier G, Mazzella N, Guibaud G. 2015b. Coupling passive sampling and time of flight mass spectrometry for a better estimation of polar pesticide freshwater contamination: Simultaneous target quantification and screening analysis. J Chromatogr A 1387:75-85.
Guibal R, Lissalde S, Leblanc J, Cleries K, Charriau A, Poulier G, Mazzella N, Rebillard J-P, Brizard Y, Guibaud G. 2018b. Two sampling strategies for an overview of pesticide contamination in an agriculture-extensive headwater stream. Environ Sci Pollut Res 25:14280-14293.
Harman C, Allan IJ, Vermeirssen ELM. 2012. Calibration and use of the polar organic chemical integrative sampler-A critical review. Environ Toxicol Chem 31:2724-2738.
Harman C, Bøyum O, Thomas KV, Grung M. 2009. Small but different effect of fouling on the uptake rates of semipermeable membrane devices and polar organic chemical integrative samplers. Environ Toxicol Chem 28:2324-2332.
Harman C, Reid M, Thomas KV. 2011. In situ calibration of a passive sampling device for selected illicit drugs and their metabolites in wastewater, and subsequent year-long assessment of community drug usage. Environ Sci Technol 45:5676-5682.
Harman C, Tollefsen K-E, Bøyum O, Thomas K, Grung M. 2008. Uptake rates of alkylphenols, PAHs and carbazoles in semipermeable membrane devices (SPMDs) and polar organic chemical integrative samplers (POCIS). Chemosphere 72:1510-1516.
Hernando MD, Martínez-Bueno MJ, Fernández-Alba AR. 2005. Seawater quality control of microcontaminants in fish farm cage systems: Application of passive sampling devices. Bol Inst Espanol Oceanogr 21:37-46.
Huckins JN, Petty JD, Booij K. 2006. Monitors of Organic Chemicals in the Environment: Semipermeable Membrane Devices. Springer, New York, NY, USA.
Ibrahim I, Togola A, Gonzalez C. 2013. In-situ calibration of POCIS for the sampling of polar pesticides and metabolites in surface water. Talanta 116:495-500.
Jacquet R, Miège C, Bados P, Schiavone S, Coquery M. 2012. Evaluating the polar organic chemical integrative sampler for the monitoring of beta-blockers and hormones in wastewater treatment plant effluents and receiving surface waters. Environ Toxicol Chem 31:279-288.
Jones-Lepp TL, Alvarez DA, Petty JD, Huckins JN. 2004. Polar organic chemical integrative sampling and liquid chromatography- electrospray/ion-trap mass spectrometry for assessing selected prescription and illicit drugs in treated sewage effluents. Arch Environ Contam Toxicol 47:427-439.
Kaserzon SL, Hawker DW, Kennedy K, Bartkow M, Carter S, Booij K, Mueller JF. 2014. Characterisation and comparison of the uptake of ionizable and polar pesticides, pharmaceuticals and personal care products by POCIS and Chemcatchers. Environ Sci Process Impacts 16:2517-2526.
Kingston JK, Greenwood R, Mills GA, Morrison GM, Persson LB. 2000. Development of a novel passive sampling system for the time-averaged measurement of a range of organic pollutants inaquatic environments. J Environ Monit 2:487-495.
Kohoutek J, Maršálek B, Bláha L. 2010. Evaluation of the novel passive sampler for cyanobacterial toxins microcystins under various conditions including field sampling. Anal Bioanal Chem 397:823-828.
Li H, Helm PA, Metcalfe CD. 2010a. Sampling in the Great Lakes for pharmaceuticals, personal care products, and endocrine-disrupting substances using the passive polar organic chemical integrative sampler. Environ Toxicol Chem 29:751-762.
Li H, Vermeirssen ELM, Helm PA, Metcalfe CD. 2010b. Controlled field evaluation of water flow rate effects on sampling polar organic compounds using polar organic chemical integrative samplers. Environ Toxicol Chem 29:2461-2469.
Lissalde S, Charriau A, Poulier G, Mazzella N, Buzier R, Guibaud G. 2016. Overview of the Chemcatcher® for the passive sampling of various pollutants in aquatic environments. Part B: Field handling and environmental applications for the monitoring of pollutants and their biological effects. Talanta 148:572-582.
Lissalde S, Mazzella N, Fauvelle V, Delmas F, Mazellier P, Legube B. 2011. Liquid chromatography coupled with tandem mass spectrometry method for thirty-three pesticides in natural water and comparison of performance between classical solid phase extraction and passive sampling approaches. J Chromatogr A 1218:1492-1502.
Lobpreis T, Vrana B, Dominiak E, Dercová K, Mills GA, Greenwood R. 2008. Effect of housing geometry on the performance of Chemcatcher™ passive sampler for the monitoring of hydrophobic organic pollutants in water. Environ Pollut 153:706-710.
Lotufo GR, George RD, Belden JB, Woodley CM, Smith DL, Rosen G. 2018. Investigation of polar organic chemical integrative sampler (POCIS) flow rate dependence for munition constituents in underwater environments. Environ Monit Assess 190:171.
MacLeod SL, McClure EL, Wong CS. 2007. Laboratory calibration and field deployment of the polar organic chemical integrative sampler for pharmaceuticals and personal care products in wastewater and surface water. Environ Toxicol Chem 26:2517-2529.
Magi E, Di Carro M, Mirasole C, Benedetti B. 2018. Combining passive sampling and tandem mass spectrometry for the determination of pharmaceuticals and other emerging pollutants in drinking water. Microchem J 136:56-60.
Martínez Bueno MJ, Hernando MD, Agüera A, Fernández-Alba AR. 2009. Application of passive sampling devices for screening of micro-pollutants in marine aquaculture using LC-MS/MS. Talanta 77:1518-1527.
Martínez Bueno MJ, Herrera S, Munaron D, Boillot C, Fenet H, Chiron S, Gómez E. 2016. POCIS passive samplers as a monitoring tool for pharmaceutical residues and their transformation products in marine environment. Environ Sci Pollut Res 23:5019-5029.
Matthiessen P, Arnold D, Johnson AC, Pepper TJ, Pottinger TG, Pulman KGT. 2006. Contamination of headwater streams in the United Kingdom by oestrogenic hormones from livestock farms. Sci Total Environ 367:616-630.
Mazzella N, Dubernet J-F, Delmas F. 2007. Determination of kinetic and equilibrium regimes in the operation of polar organic chemical integrative samplers. Application to the passive sampling of the polar herbicides in aquatic environments. J Chromatogr A 1154:42-51.
Mazzella N, Lissalde S, Moreira S, Delmas F, Mazellier P, Huckins JN. 2010. Evaluation of the use of performance reference compounds in an Oasis-HLB adsorbent based passive sampler for improving water concentration estimates of polar herbicides in freshwater. Environ Sci Technol 44:1713-1719.
Metcalfe C, Hoque ME, Sultana T, Murray C, Helm P, Kleywegt S. 2014. Monitoring for contaminants of emerging concern in drinking water using POCIS passive samplers. Environ Sci Process Impact 16:473-481.
Miller TH, Baz-Lomba JA, Harman C, Reid MJ, Owen SF, Bury NR, Thomas KV, Barron LP. 2016. The first attempt at non-linear in silico prediction of sampling rates for polar organic chemical integrative samplers (POCIS). Environ Sci Technol 50:7973-7981.
Morin N, Camilleri J, Cren-Olivé C, Coquery M, Miège C. 2013. Determination of uptake kinetics and sampling rates for 56 organic micropollutants using “pharmaceutical” POCIS. Talanta 109:61-73.
Poulier G, Lissalde S, Charriau A, Buzier R, Cleries K, Delmas F, Mazzella N, Guibaud G. 2015. Estimates of pesticide concentrations and fluxes in two rivers of an extensive French multi-agricultural watershed: Application of the passive sampling strategy. Environ Sci Pollut Res 22:8044-8057.
Poulier G, Lissalde S, Charriau A, Buzier R, Delmas F, Gery K, Moreira A, Guibaud G, Mazzella N. 2014. Can POCIS be used in Water Framework Directive (2000/60/EC) monitoring networks? A study focusing on pesticides in a French agricultural watershed. Sci Total Environ 497-498:282-292.
Rujiralai T, Bull ID, Llewellyn N, Evershed RP. 2011. In situ polar organic chemical integrative sampling (POCIS) of steroidal estrogens in sewage treatment works discharge and river water. J Environ Monit 13:1427-1434.
Thomatou A-A, Zacharias I, Hela D, Konstantinou I. 2011. Passive sampling of selected pesticides in aquatic environment using polar organic chemical integrative samplers. Environ Sci Pollut Res 18:1222-1233.
Togola A, Budzinski H. 2007. Development of polar organic integrative samplers for analysis of pharmaceuticals in aquatic systems. Anal Chem 79:6734-6741.
Uher E, Tusseau-Vuillemin M-H, Gourlay-France C. 2013. DGT measurement in low flow conditions: Diffusive boundary layer and lability considerations. Environ Sci Process Impact 15:1351-1358.
Vallejo A, Prieto A, Moeder M, Usobiaga A, Zuloaga O, Etxebarria N, Paschke A. 2013. Calibration and field test of the Polar Organic Chemical Integrative Samplers for the determination of 15 endocrine disrupting compounds in wastewater and river water with special focus on performance reference compounds (PRC). Water Res 47:2851-2862.
Vermeirssen ELM, Dietschweiler C, Escher BI, van der Voet J, Hollender J. 2012. Transfer kinetics of polar organic compounds over polyethersulfone membranes in the passive samplers POCIS and Chemcatcher. Environ Sci Technol 46:6759-6766.
Vrana B, Allan IJ, Greenwood R, Mills GA, Dominiak E, Svensson K, Knutsson J, Morrison G. 2005. Passive sampling techniques for monitoring pollutants in water. Trends Anal Chem 24:845-868.
Vrana B, Schüürmann G. 2002. Calibrating the uptake kinetics of semipermeable membrane devices in water: Impact of hydrodynamics. Environ Sci Technol 36:290-296.
Young MS, Shia J, Shah D, Tran K, Huang D. 2017. Oasis PRiME HLB Food Applications Notebook. Waters, Milford, MA, USA.
Zhang Z, Hibberd A, Zhou JL. 2008. Analysis of emerging contaminants in sewage effluent and river water: Comparison between spot and passive sampling. Anal Chim Acta 607:37-44.

Auteurs

R Guibal (R)

Laboratoire Peirene EA7500, University of Limoges, Unité de Recherche Associée Institut National de Recherche en Sciences et Technologies, Ecole Nationale Supérieure d'Ingénieurs de Limoges-Ecole Nationale Supérieure de Céramique Industrielle, Limoges, France.

S Lissalde (S)

Laboratoire Peirene EA7500, University of Limoges, Unité de Recherche Associée Institut National de Recherche en Sciences et Technologies, Limoges, France.

G Guibaud (G)

Laboratoire Peirene EA7500, University of Limoges, Unité de Recherche Associée Institut National de Recherche en Sciences et Technologies, Limoges, France.

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