A model to evaluate ozone distribution and reaction byproducts in aircraft cabin environments

Indoor Air. 2022 Nov;32(11):e13178. doi: 10.1111/ina.13178.

Abstract

Ozone and byproducts of ozone-initiated reactions are among the primary pollutants in aircraft cabins. However, investigations of the spatial distribution and reaction mechanisms of these pollutants are insufficient. This study established a computational fluid dynamics-based model to evaluate ozone and byproduct distribution, considering ozone reactions in air, adsorption onto surfaces, and byproduct desorption from surfaces. The model was implemented in an authentic single-aisle aircraft cabin and validated by measurements recorded during the aircraft cruise phase. Ozone concentrations in the supply air-dominated area were approximately 50% higher than that in the passenger breathing zone, suggesting that human surfaces represent a significant ozone sink. The deposition velocity onto human bodies was 21.83 m/h, surpassing 3.97 m/h on other cabin interior surface areas. Our model provides a mechanistic tool to analyze ozone and byproduct concentration distributions, which would be useful for assessing passenger health risks and for developing strategies for healthier aircraft cabin environments.

Keywords: aircraft cabin; distribution; ozone; products; reaction.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Air Pollution, Indoor* / analysis
  • Aircraft
  • Environmental Pollutants*
  • Humans
  • Hydrodynamics
  • Ozone* / analysis

Substances

  • Ozone
  • Environmental Pollutants