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Characterization of exposure pathways to PBDEs and HBCD - comparing exposure estimates with biomonitoring. NILU F

Thomsen, C.; Haug, L.S.; Frøshaug, M.; Huber, S.; Schlabach, M.; Becher, G.

Introduction
Brominated flame retardants such as the polybrominated diphenyl ethers (PBDEs) and
hexabromocyclododecane (HBCD) are well known to be present in indoor air and dust and
contribute to human exposure. However, the influence of indoor contamination on human body
burdens is not fully understood. Some recent studies have suggested that for many individuals
indoor exposures may be comparable to or greater than the dietary intake. The aim of this study
was to characterize exposure pathways to PBDEs and HBCD and compare exposure estimates
with biomonitoring.
Materials and Methods
A study group of 41 female volunteers from the greater Oslo area, Norway was established.
Informed consent was obtained from all the participants and the project was approved by the
Regional Committee for Medical Research Ethics. Samples of house dust as well as indoor air
from the women¿s residences were collected between February and May 2008. The women also
donated serum samples and completed a questionnaire covering demographic information, life
style factors as well as dietary habits. PBDEs and HBCD were determined in all samples types.
Results and discussion
The sum of six tri- to hexa BDEs (BDE-28, 47, 99, 100, 153 and 154) in the women¿s serum
ranged from 0.67 to 30 ng/g lipids, while BDE-209 ranged from 0.46 to 11 ng/g lipids. Of these
PBDEs, only BDE-28 and 47 were found above LOQ in air, in concentrations ranging from
0.78-58 and 1.3-63 ng/m3, respectively. In addition BDE-66 and BDE-49/71 were occasionally
detected. In house dust, the sum 6 PBDEs ranged from 9.3 to 662 ng/g, while the sum of ¿, ß,
and ¿-HBCD ranged from 55-2808 ng/g. Individual PBDE congeners were well correlated
within each sample type. Significant correlations were also found between individual PBDE
concentrations in air and dust as well as between sum 6 PBDE in dust and sum 6 PBDE in
serum. Assuming an ingestion of house dust of 50 mg per day, the intake of sum 6 PBDE ranged
from 0.008 to 0.47 ng/kg bw/day (mean 0.064 ng/kg bw/day). The corresponding value for sum
HBCD was 0.039-2.2 ng/kg bw/day (mean 0.30 ng/kg bw/day). The intake from food has not
been assessed in this cohort yet, but ongoing multivariate regression analyses point to
statistically significant associations between serum concentrations of PBDEs and some variables
in the indoor environment as well as the diet. The dietary intake was estimated to range from
0.14-3.6 ng/kg bw/day (mean 1.1 ng/kg bw/day) for sum 7 PBDEs (sum 6 PBDE + BDE-183)
and 0.06-0.87 (mean 0.27 ng/kg bw/day) for sum HBCD in one of our previous studies on
persons exposed to background contaminated food in Norway. These preliminary findings
suggest that exposure from house dust is important with respect to body burdens of BFRs,
HBCD in particular.

2011

Characterization of gas-phase organics using proton transfer raction time-of-flight mass spectrometry: cooking emissions.

Klein, F.; Platt, S.M.; Farren, N.J.; Detournay, A.; Bruns, E.A.; Bozzetti, C.; Daellenbach, K.R.; Kilic, D.; Kumar, N.K.; Pieber, S.M.; Slowik, J.G.; Temime-Roussel, B.; Marchand, N.; Hamilton, J.F.; Baltensperger, U.; Prévôt, A.S.H.; El Haddad, I.,.

2016

Characterization of indoor/outdoor particulate matter physico-chemical characteristics in two residential houses in Oslo, Norway: an overview.

Lazaridis, M.; Aleksandropoulou, A.; Dahlin, E.; Smolík, J.; Zdímal, V.; Katsivela, E.; Glytsos, T.; Hanssen, J.E.

2005

Characterization of inhalation exposure to gaseous elemental mercury during artisanal gold mining and e-waste recycling through combined stationary and personal passive sampling

Snow, Melanie A.; Darko, Godfred; Gyamfi, Opoku; Ansah, Eugene; Breivik, Knut; Hoang, Christopher; Lei, Ying Duan; Wania, Frank

Royal Society of Chemistry (RSC)

2021

Characterization of the Aerosol in the Sub-Arctic ALOMAR Station (69N, 16E, 380 m), with Sun Photometer (2002- 2007).

Rodríguez, E.; Cachorro, V.; Toledano, C.; Berjón, A.; Mogo, S.; Montilla, E.; Torres, B.; Blindheim, S.; de Frutos, A.; Gausa, M.; Stebel, K.

2008

Characterization of the atmospheric environment during extreme precipitation events associated with atmospheric rivers in Norway - Seasonal and regional aspects

Michel, Clio; Sorteberg, Asgeir; Eckhardt, Sabine; Weijenborg, Christian; Stohl, Andreas; Cassiani, Massimo

Extreme precipitation events in Norway in all seasons are often linked to atmospheric rivers (AR). We show that during the period 1979–2018 78.5% of the daily extreme precipitation events in Southwestern Norway are linked to ARs, this percentage decreasing to 59% in the more northern coastal regions and ~40% in the inland regions. The association of extreme precipitation with AR occurs most often in fall for the coastal areas and in summer inland. All Norwegian regions experience stronger winds and 1–2°C increase of the temperature at 850 hPa during AR events compared to the climatology, the extreme precipitation largely contributing to the wet climatology (only considering rainy days) in Norway but also in Denmark and Sweden when the rest of Europe is dry. A cyclone is found nearby the AR landfall point in 70% of the cases. When the cyclone is located over the British Isles, as it is typically the case when ARs reach Southeastern Norway, it is associated with cyclonic Rossby wave breaking whereas when the ARs reach more northern regions, anticyclonic wave breaking occurs over Northern Europe. Cyclone-centered composites show that the mean sea level pressure is not significantly different between the eight Norwegian regions, that baroclinic interaction can still take place although the cyclone is close to its decay phase and that the maximum precipitation occurs ahead of the AR. Lagrangian air parcel tracking shows that moisture uptake mainly occurs over the North Atlantic for the coastal regions with an additional source over Europe for the more eastern and inland regions.

Elsevier

2021

Characterization of ultrafine particles at a rural site in Switzerland

Dada, Lubna; Amarandi, Lidia; Brem, Benjamin; Nowak, Nora; Modini, Robin; Coen, Martine Collaud; Hüglin, Christoph; Evangeliou, Nikolaos; Gysel-Beer, Martin

2024

Characterizing mercury depletion events in Ny-Ålesund, 2003.

Steffen, A.; Aspmo, K.; Banic, C.; Berg, T.; Ebinghaus, R.; Ferrari, C.; Gauchard, P.-A.; Temme. C.

2004

Cheaper air quality sensors arrived just in time for the climate catastrophe

Castell, Nuria (intervjuobjekt); Calma, Justine (journalist)

2020

Chemical analysis of POPs and heavy metals in precipitation at NILU

Uggerud, Hilde Thelle; Halvorsen, Helene Lunder

2023

Chemical and microphysical properties of particles in aged forest fire plumes from Alaska and Western Canada observed in the summer 2004 over the Northeastern U.S.

Wollny, A.G.; Brock, C.A.; Cooper, O.R.; de Gouw, J.A.; Hudson, P.K.; Middlebrook, A.M.; Stohl, A.; Warneke, C.; Peltier, R.; Weber, R.

2005

Chemical and microphysical properties of particles in aged plumes from forest fire in Alaska and Western Canada.

Wollny, A.G.; Brock, C.A.; Cooper, O.R.; Fehsenfeld, F.C.; de Gouw, J.A.; Hudson, P.K.; Middlebrook, A.M.; Murphy, D.M.; Peltier, R.; Stohl, A.; Warneke, C.; Weber, R.

2005

Chemical characterisation of the urban aerosol during Göte-2005.

Hallquist, M.; Andersson, P.U.; Boman, J.; Emren, A.; Hagström, M.; Hasegawa, S.; Janhäll, S.; Langer, S.; Ljungström, E.; Nemitz, E.; Olofsson, K.F.G.; Pettersson, J.B.C.; Synal, H-A.; Szidat, S.; Shannigrahi, A.S.; Svane, M.; Thomas, R.; Yttri, K.E.

2005

Chemical characteristics of North American surface layer outflow: Insights from Chebogue Point, Nova Scotia.

Millet, D.J.; Goldstein, A.H.; Holzinger, R.; Williams, B.J.; Allan, J.D.; Jimines, J.L.; Worsnop, D.R.; Roberts, J.M.; White, A.B.; Hudman, R.C.; Bertschi, I.T.; Stohl, A.

2006

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