Characterization and Comparison of Three Passive Air Samplers for Persistent Organic Pollutants
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- 31 August 2002
- journal article
- research article
- Published by American Chemical Society (ACS) in Environmental Science & Technology
- Vol. 36 (19) , 4142-4151
- https://doi.org/10.1021/es020635t
Abstract
The accumulation of persistent organic pollutants by three passive sampling mediasemipermeable membrane devices (SPMDs), polyurethane foam (PUF) disks, and an organic-rich soilwas investigated. The media were exposed to contaminated indoor air over a period of 450 days, and concentrations in the air and in the media were monitored for individual polychlorinated biphenyl (PCB) congeners and polychlorinated naphthalene homologue groups. Uptake was initially linear and governed by the surface area of the sampler and the boundary layer air-side mass transfer coefficient (MTC). Mean values of the MTC were 0.13, 0.11, and 0.26 cm s-1 for SPMD, PUF, and soil, respectively. As the study progressed, equilibrium was established between ambient air and the passive sampling media for the lower molecular weight PCB congeners. This information was used to calculate passive sampler−air partition coefficients, KPSM-A. These were correlated to the octanol−air partition coefficient, and the resulting regressions were used to predict KPSM-A for the full suite of PCBs. Information on MTC, KPSM-A, surface area, and effective thickness of each sampler was used to estimate times to equilibrium for each medium. These ranged from tens of days for the lower molecular weight congeners to tens of years for the higher molecular weight PCBs. Expressions were also developed to relate the amount of chemical accumulated by the passive sampling media to average ambient air concentrations over the integration period of the sample.Keywords
This publication has 13 references indexed in Scilit:
- Influence of Environmental Variables on the Spatial Distribution of PCBs in Norwegian and U.K. Soils: Implications for Global CyclingEnvironmental Science & Technology, 2002
- Further Developments in the Use of Semipermeable Membrane Devices as Passive Air Samplers: Application to PCBsEnvironmental Science & Technology, 2001
- Determination of Uptake Kinetics (Sampling Rates) by Lipid-Containing Semipermeable Membrane Devices (SPMDs) for Polycyclic Aromatic Hydrocarbons (PAHs) in WaterEnvironmental Science & Technology, 1999
- Polychlorinated naphthalenes in urban airAtmospheric Environment, 1997
- Semipermeable Membrane Devices as Passive Samplers To Determine Organochlorine Pollutants in CompostEnvironmental Science & Technology, 1997
- Spatial Distribution of PAHs in the U.K. Atmosphere Using Pine NeedlesEnvironmental Science & Technology, 1996
- Measurements of Octanol−Air Partition Coefficients for Polychlorinated BiphenylsJournal of Chemical & Engineering Data, 1996
- Rapid determination of polyaromatic hydrocarbons and polychlorinated biphenyls in water using solid-phase microextraction and GC/MSEnvironmental Science & Technology, 1994
- Application of semipermeable membrane devices (SPMDs) as passive air samplersChemosphere, 1993
- Role of plant biomass in the global environmental partitioning of chlorinated hydrocarbonsEnvironmental Science & Technology, 1991