Children's exposure to brominated flame retardants in indoor environments - A review
Eleftheria Malliari1, Olga-Ioanna Kalantzi1
1Department of Environment, University of the Aegean, Mytilene 81100, Greece.
Insights
Children
Area of Science:
- Environmental Science
- Toxicology
- Public Health
Background:
- Brominated flame retardants (BFRs) are widely used in consumer products.
- Children may be exposed to BFRs in indoor environments through dust, air, and dermal contact.
- Geographical variations in BFR concentrations exist, with higher levels found in North America and Europe.
Purpose of the Study:
- To review current research on children's exposure to BFRs in indoor settings.
- To identify knowledge gaps regarding BFR exposure pathways and influencing factors.
- To highlight emerging BFRs and alternative exposure assessment methods.
Main Methods:
- Literature review of studies on children's exposure to BFRs.
- Analysis of BFR concentrations in various indoor environments (dust, air, tissues).
- Evaluation of different exposure pathways and sampling matrices.
Main Results:
- PBDEs, HBCDD, and TBBPA show significant geographical variations, with highest concentrations in North America, Europe, and Asia.
- Emerging BFRs like DBDPE are detected, particularly in China.
- Dust ingestion is the primary exposure route for children, especially infants and toddlers.
Conclusions:
- Children's exposure to BFRs is influenced by indoor environment characteristics and geographical location.
- Further research is needed on children's behavior, infant exposure via baby products, and alternative sampling methods.
- Reducing BFR exposure in indoor environments is crucial for protecting children's health.
Abstract:
The aim of this review is to present up-to-date research on children's exposure to brominated flame retardants (BFRs) in indoor environments. Large geographical variations were observed for all BFRs [polybrominated diphenyl ethers (PBDEs), hexabromocyclododecane (HBCDD), tetrabromobisphenol A (TBBPA)], with the highest concentrations of PBDEs measured in North America (BDE-47) and Europe (BDE-209), where higher concentrations of PBDEs are present in dust from houses, daycare centers and primary schools. In Asia the highest PBDE concentrations were measured in China, near e-waste recycling areas. In the Middle East, Australia and Africa BFR levels were low in most indoor spaces. Asian countries also have the highest concentrations of TBBPA and HBCDD, followed by European countries. Fewer studies have been conducted measuring novel and emerging BFRs (NBFRs or EBFRs), of which decabromodiphenylethane (DBDPE) has the highest concentration in indoor environments, especially in China. The vast majority of children's exposure studies have been conducted in houses, sampling either dust or air, and considerably fewer in schools, daycare centers, cars and public facilities, despite BFR levels being comparable to (or sometimes even higher than) house dust. Relatively fewer studies focused on children's tissues such as serum, and only two studied exposure via mouthing toys. Alternative noninvasive sampling matrices that may act as surrogates for exposure to BFRs such as handwipes and silicone wristbands have recently started to gain momentum, because of the ease of sampling, faster collection time and better correlations to serum than house dust. Feces sampling is another promising alternative to children's serum that warrants further research. While many studies have associated different indoor environment characteristics, there is a knowledge gap on the association between children's behaviour and activity patterns and their exposure to BFRs, as well as data on infant exposure to BFRs via baby products. Results from the studies showed that dust ingestion was the dominant exposure pathway for most studied BFRs compared to indoor air inhalation and dermal contact, especially for infants and toddlers who have higher exposures than older children.
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