A054-02
Organic Composition of Three Different Size Ranges of Aerosol Particles over the Southern Ocean

Tuesday, 8 December 2020: 19:04
Virtual
Lynn M Russell1, Georges Saliba2, Kevin J Sanchez3, Cynthia H Twohy4, Greg Roberts5, Savannah Lewis1, Jeramy Dedrick6, Christina S McCluskey7, Kathryn Moore8, Paul J DeMott9 and Darin W Toohey10, (1)University of California San Diego, Scripps Institution of Oceanography, La Jolla, CA, United States, (2)Carnegie Mellon University, Center for Atmospheric Particle Studies, Pittsburgh, PA, United States, (3)Scripps Institution of Oceanography, La Jolla, CA, United States, (4)NorthWest Research Associates Boulder, Boulder, CO, United States, (5)Météo-France Toulouse, Toulouse Cedex 01, France, (6)University of California San Diego, La Jolla, United States, (7)University Corporation for Atmospheric Research, Boulder, United States, (8)Colorado State University, Atmospheric Science, Fort Collins, CO, United States, (9)Colorado State University, Fort Collins, CO, United States, (10)Univ Colorado, Boulder, CO, United States
Abstract:
Very few measurements exist of the composition and contribution to cloud condensation nuclei (CCN) of organic mass (OM) at different sizes for particles over the Southern Ocean. Airborne and shipboard measurements of organic composition, aerosol number and mass size distributions, and CCN spectra during the Southern Ocean Clouds, Radiation, Aerosol Transport Experimental Study (SOCRATES) provide a comparison of organic contributions at three different size ranges: (1) by scanning transmission X-ray microscope (STXM) with near edge X-ray absorption fine structure (NEXAFS) for particles 0.25–1.75µm diameter, (2) by scanning transmission electron microscopy with energy dispersive X-ray spectroscopy (STEM-EDS) for particles 0.1–0.5 and 0.5–1µm diameter, and (3) indirectly by comparing CCN spectra to particle size distributions for particles <0.15µm diameter. Organic functional groups from STXM-NEXAFS microscopy indicate that the majority of particles between 0.25 and 1.75 µm diameter with detectable organic components were consistent with marine organic signatures associated with sea spray particles, which was also true for ice nucleating particles sampled by immersion freezing <-27°C. STEM analysis indicates that particles 0.1–0.5µm diameter were mostly sulfate and particles 0.5–1µm diameter were mostly sodium-based sea spray. Particles <0.15 µm diameter had kappa values of 0.2–0.5, indicating the substantial presence of organic mass at these sizes. The organic component fraction estimated from comparing the size distribution and supersaturation spectra varied from <10% to 70% for particles <0.15µm diameter. This variable OM fraction accounted for <0.1 µg/m3 mass concentrations of particles smaller than 0.15µm diameter but may play a role at cloud supersaturations greater than 0.3%.