Brandon E. Boor
Environmental Science · Purdue University West Lafayette
Publications
95
Citations
2,215
Est. group size
~12
Recurring co-author estimate
Active years
17
Publishing since 2010
Brandon E. Boor studies indoor air quality, focusing on how airborne particles, gases, and pollutants behave inside buildings and how ventilation and filtration systems affect human exposure to them. His work spans measuring ultrafine particles, chemical pollutants, and aerosols in homes, offices, and other indoor spaces, as well as testing and improving HVAC (heating, ventilation, and air conditioning) filtration technologies. Students in this area would likely work on building-scale field measurements, sensor development, and air quality data analysis relevant to health and building engineering.
Publication output has remained fairly steady over the last decade, with year-to-year fluctuations but no clear long-term increase or decline (ranging roughly 4-12 papers per year).
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Integration of a thermal aerosol generator into a full-scale HVAC filter test rig for aging filters with representative urban aerosol size distributions (RP-1734)
Science and Technology for the Built Environment · 2026
- Integration of a thermal aerosol generator into a full-scale HVAC filter test rig for aging filters with representative urban aerosol size distributions (RP-1734)
Figshare · 2026
- Integration of a thermal aerosol generator into a full-scale HVAC filter test rig for aging filters with representative urban aerosol size distributions (RP-1734)
Figshare · 2026
- Long-term in-situ aging of HVAC filters under continuous outdoor aerosol exposure: Temporal evolution in size-resolved filtration efficiency, mass loading, pressure drop, and fan energy consumption
Building and Environment · 2026
- Spatiotemporal variations in ozone and carbon dioxide concentrations in an HVAC system of a LEED-certified office building
Building and Environment · 2025
- Corrigendum to “Size-resolved inhalation intake fractions for particles released from human activities in residential indoor environments” [Building and Environment 244 (2023) 110763]
Building and Environment · 2025
- The influence of displacement ventilation on indoor carbon dioxide exposure and ventilation efficiency in a living laboratory open-plan office
Building and Environment · 2024
- Size-Dependent Nascent Sea Spray Aerosol Bounce Fractions and Estimated Viscosity: The Role of Divalent Cation Enrichment, Surface Tension, and the Kelvin Effect
Environmental Science & Technology · 2024
- Evaluation of tetrachloroethylene (PCE) and its degradation products in human exhaled breath and indoor air in a community setting
Journal of Breath Research · 2024
- Spatiotemporal Mapping of Ultrafine Particle Fluxes in an Office HVAC System with a Diffusion Charger Sensor Array
ACS ES&T Air · 2024
- Virtual Sensors: Toward High-Resolution Air Pollution Monitoring using AI and IoT
IEEE Internet of Things Magazine · 2023
- Size-resolved inhalation intake fractions for particles released from human activities in residential indoor environments
Building and Environment · 2023
- Dynamic behavior of gas-phase NCl3 and CO2 in indoor pool facilities
Building and Environment · 2023
- Corrigendum to “Size-resolved inhalation intake fractions for particles released from human activities in residential indoor environments” [Build. Environ. 244 (2023) 110763]
Building and Environment · 2023
- High time‐resolution measurements of ultrafine and fine woodsmoke aerosol number and surface area concentrations in biomass burning kitchens: A case study in Western Kenya
Indoor Air · 2022
- Building and Environment×13
- Environmental Science & Technology×8
- Atmosphere×5
- Environmental Science & Technology Letters×4
- Figshare×4
- Satya S. Patra
Environmental Science · Purdue University West Lafayette
- Colleen Marciel F. Rosales
Environmental Science · Indiana University
- Jae Hong Park
Environmental Science · Purdue University West Lafayette
- A. D’Alessandro
Environmental Science · Indiana University
- Qingyang Xiao
Environmental Science · Indiana University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 20, 2026.
Claim or correct this profile