Steady-State Theory-Based New Insights into Multi-Media Partitioning Mechanisms of SVOCs in Indoor Environments and Health Risks
ID:122 View Protection:ATTENDEE Updated Time:2025-11-06 11:27:31 Hits:115 Oral Presentation

Start Time:Pending(Asia/Shanghai)

Duration:Pending

Session:No Session »

No files

Abstract
Traditional equilibrium-based models often fail to accurately predict the fate and exposure risks of semi-volatile organic compounds (SVOCs) in indoor environments due to dynamic conditions and continuous emissions. Our research establishes a novel steady-state theory that better describes the multi-media partitioning behavior of SVOCs under real-world indoor scenarios. By integrating field measurements across various microenvironments with mechanistic modeling, we demonstrate that SVOCs frequently exist in a non-equilibrium, steady-state condition governed by emission rates, ventilation, and surface interactions. This theory enables more accurate prediction of SVOC concentrations in air, dust, and settled particles. Furthermore, we apply this framework to assess human exposure pathways and health risks. The steady-state approach provides a scientific basis for improved indoor air quality management and exposure mitigation strategies, particularly for vulnerable populations.
Keywords
SVOCs, steady-state theory, multi-media partitioning, health risks
Speaker
Yi-Fan Li
Prof Dalian Maritime University

Submission Author
Yi-Fan Li Dalian Maritime University
Submit Comment
Verify Code Change Another
All Comments
Important Date
  • Conference Date

    Nov 20

    2025

    to

    Nov 24

    2025

  • Nov 10 2025

    Draft paper submission deadline

  • Nov 24 2025

    Registration deadline

Sponsored By
The Pacific Science Association
Organized By
Shantou University
Xiamen University
Contact Information
Previous Conferences