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March 19, 2026Indoor and Built Environment1 citations

Designing a compact thermal air steriliser with recirculation for improved indoor environmental quality: Experimentation, modelling and simulation

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AGAmarendra Kumar GuptaSTSunil Kumar Thamida

Key Points

  • This research aims to design and evaluate a compact thermal air steriliser to improve indoor environmental quality and reduce airborne pathogens.
  • Developed a thermal air steriliser prototype with wall heating and recirculation features.
  • Studied start-up time and operational fluctuations of the steriliser.
  • Conducted simulation studies using COMSOL Multiphysics software to analyze temperature zones and identify dead zones.
  • Measured optical density of the air to assess microbial levels after passing through the steriliser.
  • Achieved a microbial level of 0.001 units in outlet air, compared to 2 units for room air.
  • Identified optimal operating parameters that matched experimental data.
  • Simulation revealed areas of varying temperature within the recycling chambers, informing design improvements.

Abstract

Given the past various airborne viral infections like SARS-CoV-2, Nipah and tuberculosis, many different types of air sterilisers were developed. One less persuasive method is the dry-heating method's thermal deactivation of viruses and bacteria. Some clues were obtained from a literature search: many viruses can be deactivated by heating air to 60°C or above for a few seconds. This work uses a thermal air steriliser with wall heating and recycling features. A prototype has been developed, and its start-up time and fluctuations in long-term operation were studied. Simulation studies were also carried out using COMSOL Multiphysics software to identify the dead zones and high and low temperature zones in the recycle chambers of the apparatus. Optimum parameters were determined for the effective functioning of this air steriliser. The parameters obtained match the data received from the experimental study. The prototype for microbial deactivation was checked by measuring the optical density of the reagent medium containing outlet air from the prototype, and it indicated a microbial level of 0.001 units against two units for room air.

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Cite This Study

Gupta et al. (2026) studied this question.

synapsesocial.com/papers/69bb92df496e729e62980986https://doi.org/10.1177/1420326x261420105
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