Title: | Emissions and fate of brominated flame retardants in the indoor environment: a critical review of modelling approaches |
Author(s): | Liagkouridis I; Cousins IT; Cousins AP; |
Address: | "IVL Swedish Environmental Research Institute, P.O. Box 21060, SE 100 31 Stockholm, Sweden; ITM Department of Applied Environmental Science, Stockholm University, SE 106 91 Stockholm, Sweden. Electronic address: ioannis.liagkouridis@ivl.se. ITM Department of Applied Environmental Science, Stockholm University, SE 106 91 Stockholm, Sweden. IVL Swedish Environmental Research Institute, P.O. Box 21060, SE 100 31 Stockholm, Sweden" |
DOI: | 10.1016/j.scitotenv.2014.02.005 |
ISSN/ISBN: | 1879-1026 (Electronic) 0048-9697 (Linking) |
Abstract: | "This review explores the existing understanding and the available approaches to estimating the emissions and fate of semi-volatile organic compounds (SVOCs) and in particular focuses on the brominated flame retardants (BFRs). Volatilisation, an important emission mechanism for the more volatile compounds can be well described using current emission models. More research is needed, however, to better characterise alternative release mechanisms such as direct material-particle partitioning and material abrasion. These two particle-mediated emissions are likely to result in an increased chemical release from the source than can be accounted for by volatilisation, especially for low volatile compounds, and emission models need to be updated in order to account for these. Air-surface partitioning is an important fate process for SVOCs such as BFRs however it is still not well characterised indoors. In addition, the assumption of an instantaneous air-particle equilibrium adopted by current indoor fate models might not be valid for high-molecular weight, strongly sorbing compounds. A better description of indoor particle dynamics is required to assess the effect of particle-associated transport as this will control the fate of low volatile BFRs. We suggest further research steps that will improve modelling precision and increase our understanding of the factors that govern the indoor fate of a wide range of SVOCs. It is also considered that the appropriateness of the selected model for a given study relies on the individual characteristics of the study environment and scope of the study" |
Keywords: | "Air Pollution, Indoor/*analysis/statistics & numerical data *Environmental Monitoring Flame Retardants/*analysis Hydrocarbons, Brominated/*analysis *Models, Chemical Volatile Organic Compounds/analysis BFRs Deposition Emissions Indoor fate Multimedia mode;" |
Notes: | "MedlineLiagkouridis, Ioannis Cousins, Ian T Cousins, Anna Palm eng Research Support, Non-U.S. Gov't Review Netherlands 2014/02/27 Sci Total Environ. 2014 Sep 1; 491-492:87-99. doi: 10.1016/j.scitotenv.2014.02.005. Epub 2014 Feb 22" |