POCIS Calibration for Organic Compound Sampling in Small Headwater Streams

被引:10
作者
Booij, Kees [1 ]
Chen, Sunmao [2 ]
Trask, Jennifer R. [3 ]
机构
[1] Pass Sampling Organ Cpds PaSOC, Kimswerd, Netherlands
[2] Syngenta Crop Protect, Greensboro, NC USA
[3] Waterborne Environm, Leesburg, VA USA
关键词
Passive sampler; Herbicide; Pesticide runoff; Sampling rate; Temperature; Flow; CHEMICAL INTEGRATIVE SAMPLERS; IN-SITU; DIFFUSIVE GRADIENTS; POLAR COMPOUNDS; WATER; MEMBRANE; HYDRODYNAMICS; POLLUTANTS; RANGE;
D O I
10.1002/etc.4731
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Field-based atrazine sampling rates (R-s) obtained by the polar organic chemical integrative sampler (POCIS) method were measured in 9 headwater streams over 3 yr covering 5 to 6 exposure periods of 2 to 3 wk/site/yr. Rates were best in line with the model R-s = 148 mL/d, with a standard deviation of 0.17 log units (factor 1.5). The POCIS canisters reduced mass transfer coefficients of the water boundary layer by a factor of 2 as measured by alabaster dissolution rates. A mechanistic model that accounts for flow and temperature effects yielded a fair estimate of the effective exchange surface area (12.5 +/- 0.8 cm(2)). This model could only be tested for higher flow velocities because of uncertainties associated with the measurement of flow velocities Environ Toxicol Chem 2020;00:1-9. (c) 2020 SETAC
引用
收藏
页码:1334 / 1342
页数:9
相关论文
共 31 条
[1]   Modified polyether-sulfone membrane: a mini review [J].
Alenazi, Noof A. ;
Hussein, Mahmoud A. ;
Alamry, Khalid A. ;
Asiri, Abdullah M. .
DESIGNED MONOMERS AND POLYMERS, 2017, 20 :532-546
[2]   Development of a passive, in situ, integrative sampler for hydrophilic organic contaminants in aquatic environments [J].
Alvarez, DA ;
Petty, JD ;
Huckins, JN ;
Jones-Lepp, TL ;
Getting, DT ;
Goddard, JP ;
Manahan, SE .
ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY, 2004, 23 (07) :1640-1648
[3]   Lab-scale investigation of the ability of Polar Organic Chemical Integrative Sampler to catch short pesticide contamination peaks [J].
Bernard, Marion ;
Boutry, Sebastien ;
Tapie, Nathalie ;
Budzinski, Helene ;
Mazzella, Nicolas .
ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 2022, 29 (01) :40-50
[4]   Review of atrazine sampling by polar organic chemical integrative samplers and Chemcatcher [J].
Booij, Kees ;
Chen, Sunmao .
ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY, 2018, 37 (07) :1786-1798
[5]   METHOD TO ACCOUNT FOR THE EFFECT OF HYDRODYNAMICS ON POLAR ORGANIC COMPOUND UPTAKE BY PASSIVE SAMPLERS [J].
Booij, Kees ;
Maarsen, Natasja L. ;
Theeuwen, Matthijs ;
van Bommel, Ronald .
ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY, 2017, 36 (06) :1517-1524
[6]   Development and Calibration of an Organic-Diffusive Gradients in Thin Films Aquatic Passive Sampler for a Diverse Suite of Polar Organic Contaminants [J].
Challis, Jonathan K. ;
Hanson, Mark L. ;
Wong, Charles S. .
ANALYTICAL CHEMISTRY, 2016, 88 (21) :10583-10591
[7]   A novel passive water sampler for in situ sampling of antibiotics [J].
Chen, Chang-Er ;
Zhang, Hao ;
Jones, Kevin C. .
JOURNAL OF ENVIRONMENTAL MONITORING, 2012, 14 (06) :1523-1530
[8]   Key role of the sorption process in alteration of metal and metalloid quantification by fouling development on DGT passive samplers [J].
Devillers, Deiphine ;
Buzier, Remy ;
Grybos, Malgorzata ;
Charriau, Adeline ;
Guibaud, Gilles .
ENVIRONMENTAL POLLUTION, 2017, 230 :523-529
[9]   Effects of hydrodynamic conditions and temperature on polar organic chemical integrative sampling rates [J].
Djomte, Valerie Toteu ;
Taylor, Raegyn B. ;
Chen, Sunmao ;
Booij, Kees ;
Chambliss, C. Kevin .
ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY, 2018, 37 (09) :2331-2339
[10]   Dealing with Flow Effects on the Uptake of Polar Compounds by Passive Samplers [J].
Fauvelle, Vincent ;
Kaserzon, Sarit L. ;
Montero, Natalia ;
Lissalde, Sophie ;
Allan, Ian J. ;
Mills, Graham ;
Mazzella, Nicolas ;
Mueller, Jochen F. ;
Booij, Kees .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2017, 51 (05) :2536-2537