Vapors Are Lost to Walls, Not to Particles on the Wall: Artifact-Corrected Parameters from Chamber Experiments and Implications for Global Secondary Organic Aerosol

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Last updated 10 janeiro 2025
Vapors Are Lost to Walls, Not to Particles on the Wall: Artifact-Corrected  Parameters from Chamber Experiments and Implications for Global Secondary  Organic Aerosol
Vapors Are Lost to Walls, Not to Particles on the Wall: Artifact-Corrected  Parameters from Chamber Experiments and Implications for Global Secondary  Organic Aerosol
SimpleSOM predictions of (a and b) SOA mass yields and (c and d
Vapors Are Lost to Walls, Not to Particles on the Wall: Artifact-Corrected  Parameters from Chamber Experiments and Implications for Global Secondary  Organic Aerosol
SOM-TOMAS model predictions (solid black lines) compared to
Vapors Are Lost to Walls, Not to Particles on the Wall: Artifact-Corrected  Parameters from Chamber Experiments and Implications for Global Secondary  Organic Aerosol
Influence of the different conditions (tested over a fine grid) on
Vapors Are Lost to Walls, Not to Particles on the Wall: Artifact-Corrected  Parameters from Chamber Experiments and Implications for Global Secondary  Organic Aerosol
Observation of Vapor Wall Deposition in a Smog Chamber Using Size
Vapors Are Lost to Walls, Not to Particles on the Wall: Artifact-Corrected  Parameters from Chamber Experiments and Implications for Global Secondary  Organic Aerosol
AMT - Particle wall-loss correction methods in smog chamber
Vapors Are Lost to Walls, Not to Particles on the Wall: Artifact-Corrected  Parameters from Chamber Experiments and Implications for Global Secondary  Organic Aerosol
ACP - Particle-phase processing of α-pinene NO3 secondary organic
Vapors Are Lost to Walls, Not to Particles on the Wall: Artifact-Corrected  Parameters from Chamber Experiments and Implications for Global Secondary  Organic Aerosol
ACP - Modeling the influence of chain length on secondary organic
Vapors Are Lost to Walls, Not to Particles on the Wall: Artifact-Corrected  Parameters from Chamber Experiments and Implications for Global Secondary  Organic Aerosol
Formation of secondary organic aerosol during the dark-ozonolysis
Vapors Are Lost to Walls, Not to Particles on the Wall: Artifact-Corrected  Parameters from Chamber Experiments and Implications for Global Secondary  Organic Aerosol
Simulated and observed diurnal profiles for the OA / CO ratio (top
Vapors Are Lost to Walls, Not to Particles on the Wall: Artifact-Corrected  Parameters from Chamber Experiments and Implications for Global Secondary  Organic Aerosol
AMT - Particle wall-loss correction methods in smog chamber

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