Quantification of air pollution exposure to in-pram babies and mitigation strategies
Ashish Sharma1, Prashant Kumar1
1Global Centre for Clean Air Research (GCARE), Department of Civil and Environmental Engineering, Faculty of Engineering and Physical Sciences, University of Surrey, Guildford GU2 7XH, United Kingdom.
Insights
Young children in prams are exposed to higher air pollution levels, especially fine particles. Pram covers can significantly reduce this exposure, highlighting the need for mitigation strategies in urban areas.
Area of Science:
- Environmental Health
- Pediatric Exposure Science
- Atmospheric Chemistry
Background:
- Young children are highly susceptible to air pollution during development.
- Limited research exists on in-pram infant exposure to diverse air pollutants.
- Understanding pollutant exposure in different pram types is crucial for child health.
Purpose of the Study:
- To quantify in-pram exposure to particulate matter (PM10, PM2.5, PM1, PNC) in various pram configurations.
- To compare pollutant concentrations at baby vs. adult breathing heights.
- To assess the effectiveness of pram covers in reducing pollutant exposure.
Main Methods:
- Simulated real-world exposure runs (89 runs, 145 km total) using single and double prams on a defined urban route.
- Simultaneous measurements at adult and in-pram baby breathing heights.
- Physico-chemical analysis (SEM) of collected particulate matter.
- Evaluation of pram covers' impact on pollutant concentrations.
Main Results:
- In-pram fine particle concentrations were up to 44% higher than at adult height.
- Particle number concentration (PNC) was 72% higher in the lower seat of a double pram.
- PM2.5-10 analysis revealed higher brake and tyre wear particles at baby height.
- Pram covers reduced fine and coarse particle concentrations by up to 39% and 43%, respectively.
Conclusions:
- In-pram babies face significantly higher air pollution exposure, particularly from traffic-related particles.
- Exposure levels vary by pram type, seating position, and proximity to pollution sources.
- Pram covers offer a viable mitigation strategy to reduce children's exposure to harmful air pollutants.
Abstract:
Young children are particularly vulnerable to air pollution exposure during their early childhood development, yet research on exposure to in-pram babies in different types of single/double prams is limited. This work aims to mimick their exposure to multiple air pollutants - particulate matter ≤10 µm in aerodynamic diameter (PM10), ≤2.5 µm (PM2.5; fine particles), ≤1 µm (PM1), ≤0.10 µm (measured as particle number concentration, PNC) - in three different types of prams (single pram facing the road; single pram facing parents; double pram facing the road). We also assessed the differences in exposure concentrations between typical adult and in-pram baby breathing height via simultaneous measurements besides assessing their physico-chemical properties (morphology and elemental composition). In addition, we analysed the impact of pram covers in mitigating in-pram exposure concentrations of selected pollutants. We carried out a total of 89 single runs, repeating on a 2.1 km long pre-defined route between an origin-destination pair (the University of Surrey to a local school) during the morning (08:00-10:00 h; local time) and afternoon (15:00-17:00 h) hours. These run simulated morning drop-off and afternoon pick-off times of school children. Overall, the experimental runs took about 66 h and covered the total length of 145 km. Substantial variability is observed in measured concentrations of different pollutants within each run (e.g., up to 290-times for PNC) and between different runs performed during different times of the day (e.g., ~62% variability in average PNC; ~7% for PM1 and 8% for PM2.5 during morning versus afternoon). The average in-pram concentration of fine particles was always higher by up to 44% compared with adult breathing height during both morning and afternoon runs. The comparison of exposure concentrations at two different sitting heights of double pram showed that PNC concentrations were higher by about 72% at the bottom seat compared to the top seat. Scanning electron microscope (SEM) analysis of PM2.5-10 revealed traces of brake wear, tyre wear and re-suspended dust minerals with the predominance of brake and tyre wear emissions at baby height compared with a relatively larger share of earth crust elements at adult height. For mitigation measures, pram covers reduced concentrations of small-sized particles by as much as 39% (fine particles) and 43% (coarse particles). Our results reinforce the need for mitigating exposures to in-pram babies, especially at urban pollution hotspots such as busy congested roads, bus stops, and traffic intersections.
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