The Modeling Consortium for Chemistry of Indoor Environments (MOCCIE) develops and integrates various indoor models across a wide range of spatial and temporal scales, including molecular dynamics simulations, kinetic process models, gas-phase and aerosol chemistry models, and computational fluid dynamic simulations. We take a holistic approach to apply our models to numerous laboratory experiments and indoor field campaigns to constrain model parameters, gain molecular- and process-level understanding, and extrapolate to different building operating conditions. We summarize our major findings of model applications to cross-cutting themes, including partitioning and reactions on indoor surfaces, human skin ozonolysis to form the human oxidation field, oxidation of volatile organic compounds to generate semivolatile organic compounds and secondary organic aerosols, and spatial distributions of indoor compounds around human occupants and in rooms. Finally, we discuss future perspectives of indoor chemistry modeling, including indoor emissions as a source of outdoor air pollutants and the impacts of climate change on indoor chemistry.
Journal article
Integrated Modeling for Chemistry of Indoor Environments: Progress and Future Perspectives
ACS ES&T air, v 3(3)
24 Feb 2026
Featured in Collection : UN Sustainable Development Goals @ Drexel
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- Title
- Integrated Modeling for Chemistry of Indoor Environments: Progress and Future Perspectives
- Creators
- Manabu Shiraiwa - University of California SystemNicola Carslaw - University of YorkPascale S. J. Lakey - University of California SystemMeredith Schervish - University of California SystemDouglas J. Tobias - University of California SystemMichael von Domaros - Philipps University of MarburgDavid R. Shaw - University of YorkToby J. Carter - University of YorkDonghyun Rim - Pennsylvania State UniversitySuwhan Yee - Pennsylvania State UniversityMichael Waring - Drexel UniversityBryan E. CummingsGlenn Morrison - University of North Carolina at Chapel HillClara M. A. EichlerAndreas Zuend - McGill UniversityChenyang Bi - University of North Carolina at Chapel HillJohn C. Little - Virginia Tech
- Publication Details
- ACS ES&T air, v 3(3)
- Publisher
- AMER CHEMICAL SOC; WASHINGTON
- Number of pages
- 18
- Grant note
- Alfred P. Sloan Foundation: G-2017-9796
We acknowledge funding from the Alfred P. Sloan Foundation (G-2017-9796, G-2019-12306, G-2020-13912) and thank Dr. Paula Olsiewski and Dr. Evan Michelson who managed the Chemistry of Indoor Environments (CIE) program. We are very grateful to our experimental collaborators in the CIE program and beyond.
- Resource Type
- Journal article
- Language
- English
- Academic Unit
- Civil, Architectural, and Environmental Engineering
- Web of Science ID
- WOS:001791321000001
- Scopus ID
- 2-s2.0-105032763102
- Other Identifier
- 991022164538004721
UN Sustainable Development Goals (SDGs)
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- Collaboration types
- Industry collaboration
- Domestic collaboration
- International collaboration
- Web of Science research areas
- Engineering, Environmental
- Meteorology & Atmospheric Sciences