Computational Water, Energy, and Environmental Engineering

Volume 2, Issue 2 (April 2013)

ISSN Print: 2168-1562   ISSN Online: 2168-1570

Google-based Impact Factor: 0.78  Citations  

Effect of Ambient Temperature on PUF Passive Samplers and PAHs Distribution in Puerto Rico

HTML  Download Download as PDF (Size: 374KB)  PP. 41-45  
DOI: 10.4236/cweee.2013.22B007    4,177 Downloads   7,062 Views  Citations

ABSTRACT

Passive sampling for the monitoring of organic pollutants (PAHs, PCBs, PBDEs) in ambient air has received increased attention in the last two decades. However, the accuracy of the concentration of organics obtained with passive samplers under varying environmental conditions is a subject of controversy. In this study, effect of ambient temperature on passive samplers was evaluated by using three different sampler configurations. Additionally, passive samplers with polyurethane disks (PUF) were applied throughout the Island for the determination of the airborne concentration of polycyclic aromatic hydrocarbons (PAHs). The passive samplers were deployed in seven municipalities for three-month periods in two different sampling campaigns, representing hurricane and non-hurricane seasons. Here we present preliminary results obtained from those sampling campaigns. The total concentrations of 15 PAHs varied from 3.1 to 19.6 and from 5.5 to 38.5 ng/m3 for hurricane and non-hurricane seasons, respectively. Hurricane and non-hurricane season concentrations of PAH were significantly different for the samples taken in the northern municipalities of the Island. However, there was no significant difference in PAH concentrations between the hurricane and non-hurricane seasons for the southern sites. Increased rainfall and high-relative humidity during the hurricane season had an influence on the concentrations of PAHs derived by the passive PUF sampler.

Share and Cite:

Vardar, N. , Chemseddine, Z. and Santos, J. (2013) Effect of Ambient Temperature on PUF Passive Samplers and PAHs Distribution in Puerto Rico. Computational Water, Energy, and Environmental Engineering, 2, 41-45. doi: 10.4236/cweee.2013.22B007.

Cited by

[1] Atmospheric Transport of PFAS Compounds from a Manufacturing Facility
2021
[2] Seasonal variation and human exposure assessment of legacy and novel brominated flame retardants in PM2. 5 in different microenvironments in Beijing, China
2019
[3] Polyurethane foam disk passive sampler derived air concentrations of persistent organic pollutants in an agricultural region with hot climate
2019
[4] Atmospheric Concentrations and Air–Soil Exchange of Polycyclic Aromatic Hydrocarbons (PAHs) in Typical Urban–Rural Fringe of Wuhan–Ezhou Region, Central …
2019
[5] Spatiotemporal variability of polybrominated diphenyl ether concentration in atmospheric fine particles in Shenzhen, China
Environmental Pollution, 2018
[6] Monitoring of Long-Term Outdoor Concentrations of PAHs with Passive Air Samplers and Comparison with Meteorological Data
Archives of environmental contamination and toxicology, 2016
[7] Aktif ve pasif örnekleme yöntemleri ile polihalkalı aromatik hidrokarbonların (PAH'lar) mevsimsel değişiminin incelenmesi
2016

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.