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◆ Environmental science and pollution research international2026-08-11

Development of a low-cost particle capturing device for vehicular emissions: a pilot study.

Gajulapalli Suryanarayanareddy, Sumanth Chinthala, Prashant Kumar

原始摘要(英文原文)· Original abstract
Urban air pollution primarily originates from vehicular emissions, which significantly contribute to deteriorating air quality in densely populated areas. While certain gaseous pollutants are partially retained by roadside vegetation, particulate matter (PM) tends to evade retention due to urban microclimatic conditions that promote deflection, settling, and resuspension. To mitigate the adverse health impacts of PM exposure, it is crucial to develop cost-effective, sustainable methods to capture pollutants at the source or near receptors. This study presents the development and evaluation of a low-cost, bio-based particle-capturing prototype designed to target vehicular emissions. The prototype consists of a cylindrical enclosure made from raw coconut husk and sugarcane pulp, tapering to a conical outlet connected to a pollutant-monitoring chamber. Performance was evaluated in an indoor environment simulating outdoor conditions under two vehicular movement scenarios: vehicles departing from a junction and cars idling at a junction. Pollutant concentrations of CO, CO2, PM2.5, and PM10 were measured under varying turbulence intensities. Results indicated that the Single Pass Removal Efficiency (SPRE) for PM2.5 and PM10 was higher in stationary vehicle scenarios under high turbulence and in moving vehicle scenarios under medium turbulence. For gaseous pollutants, low-turbulence, stationary conditions facilitated more efficient contaminant capture. Vehicle-halting-at-junction scenario reductions ranged from 15-20% for PM10, 15-45% for PM2.5, 10-30% for CO, and 15-45% for CO2. Similarly, vehicle-moving-at-junction scenario reductions ranged from 20-65% for PM10, 15-65% for PM2.5, and 40-55% for CO and CO2. The findings demonstrate the potential of bio-based materials as sustainable alternatives for mitigating urban air pollution and highlight the role of turbulence dynamics in optimising the capture efficiency of particulate and gaseous pollutants.
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Development of a low-cost particle capturing device for vehicular emissions: a pilot study. — 科研速览 Science Skim