Phase Behavior of Polluted and Clean Urban Winter PM2.5 from Optical Observations and Thermodynamic Equilibrium Modeling

  • Do, Tien Van
  • Zuend, Andreas
  • Choi, Na Rae
  • Lee, Taehyoung
  • Shin, Hyejung
  • 외 4명
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초록

The phase state of fine particles (PM2.5) critically governs gas-particle partitioning and multiphase chemical reactivity, yet remains poorly constrained under real-world conditions. In this study, optical microscopy, poke-and-flow experiments, and thermodynamic modeling were combined to examine the phase behavior of wintertime urban PM2.5 collected in Ansan, South Korea. Morphological analyses revealed humidity- and composition-dependent transitions, with liquid-liquid and liquid-liquid-solid states frequently observed in individual particles. Polluted, nitrate-rich aerosols predominantly exhibited liquid-like morphology and followed near-equilibrium partitioning of nitrate and ammonium. In contrast, cleaner, organic-rich particles likely exhibited higher viscosity and nonliquid characteristics, which may have led to partial deviation from equilibrium predictions. These results provide direct experimental evidence of phase complexity in ambient PM2.5 and demonstrate that the particle phase state, modulated by relative humidity and composition, plays a critical role in determining thermodynamic behavior and atmospheric reactivity of urban aerosols.

키워드

phase statechemical compositionaerosolliquid water contentequilibrium modelingurbanPM(2.5)SECONDARY ORGANIC MATERIALLIQUID-LIQUID EQUILIBRIAATMOSPHERIC PARTICLESAEROSOLVISCOSITYHUMIDITYSTATESEPARATIONNITRATEN2O5
제목
Phase Behavior of Polluted and Clean Urban Winter PM2.5 from Optical Observations and Thermodynamic Equilibrium Modeling
저자
Do, Tien VanZuend, AndreasChoi, Na RaeLee, TaehyoungShin, HyejungLee, KwangyulPark, JongsungSeo, SeokjunSong, Mijung
DOI
10.1021/acs.est.5c16878
발행일
2026-02-24
유형
Article
저널명
Environmental Science & Technology
60
7
페이지
5645 ~ 5651