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Effects of Atmospheric Aging Processes on Nascent Sea Spray Aerosol Physicochemical Properties
[Image: see text] The effects of atmospheric aging on single-particle nascent sea spray aerosol (nSSA) physicochemical properties, such as morphology, composition, phase state, and water uptake, are important to understanding their impacts on the Earth’s climate. The present study investigates these...
Autores principales: | , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Chemical Society
2022
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Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9677592/ https://www.ncbi.nlm.nih.gov/pubmed/36425339 http://dx.doi.org/10.1021/acsearthspacechem.2c00258 |
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author | Kaluarachchi, Chathuri P. Or, Victor W. Lan, Yiling Hasenecz, Elias S. Kim, Deborah Madawala, Chamika K. Dorcé, Glorianne P. Mayer, Kathryn J. Sauer, Jonathan S. Lee, Christopher Cappa, Christopher D. Bertram, Timothy H. Stone, Elizabeth A. Prather, Kimberly A. Grassian, Vicki H. Tivanski, Alexei V. |
author_facet | Kaluarachchi, Chathuri P. Or, Victor W. Lan, Yiling Hasenecz, Elias S. Kim, Deborah Madawala, Chamika K. Dorcé, Glorianne P. Mayer, Kathryn J. Sauer, Jonathan S. Lee, Christopher Cappa, Christopher D. Bertram, Timothy H. Stone, Elizabeth A. Prather, Kimberly A. Grassian, Vicki H. Tivanski, Alexei V. |
author_sort | Kaluarachchi, Chathuri P. |
collection | PubMed |
description | [Image: see text] The effects of atmospheric aging on single-particle nascent sea spray aerosol (nSSA) physicochemical properties, such as morphology, composition, phase state, and water uptake, are important to understanding their impacts on the Earth’s climate. The present study investigates these properties by focusing on the aged SSA (size range of 0.1–0.6 μm) and comparing with a similar size range nSSA, both generated at a peak of a phytoplankton bloom during a mesocosm study. The aged SSAs were generated by exposing nSSA to OH radicals with exposures equivalent to 4–5 days of atmospheric aging. Complementary filter-based thermal optical analysis, atomic force microscopy (AFM), and AFM photothermal infrared spectroscopy were utilized. Both nSSA and aged SSA showed an increase in the organic mass fraction with decreasing particle sizes. In addition, aging results in a further increase of the organic mass fraction, which can be attributed to new particle formation and oxidation of volatile organic compounds followed by condensation on pre-existing particles. The results are consistent with single-particle measurements that showed a relative increase in the abundance of aged SSA core–shells with significantly higher organic coating thickness, relative to nSSA. Increased hygroscopicity was observed for aged SSA core–shells, which had more oxygenated organic species. Rounded nSSA and aged SSA had similar hygroscopicity and no apparent changes in the composition. The observed changes in aged SSA physicochemical properties showed a significant size-dependence and particle-to-particle variability. Overall, results showed that the atmospheric aging can significantly influence the nSSA physicochemical properties, thus altering the SSA effects on the climate. |
format | Online Article Text |
id | pubmed-9677592 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | American Chemical Society |
record_format | MEDLINE/PubMed |
spelling | pubmed-96775922022-11-22 Effects of Atmospheric Aging Processes on Nascent Sea Spray Aerosol Physicochemical Properties Kaluarachchi, Chathuri P. Or, Victor W. Lan, Yiling Hasenecz, Elias S. Kim, Deborah Madawala, Chamika K. Dorcé, Glorianne P. Mayer, Kathryn J. Sauer, Jonathan S. Lee, Christopher Cappa, Christopher D. Bertram, Timothy H. Stone, Elizabeth A. Prather, Kimberly A. Grassian, Vicki H. Tivanski, Alexei V. ACS Earth Space Chem [Image: see text] The effects of atmospheric aging on single-particle nascent sea spray aerosol (nSSA) physicochemical properties, such as morphology, composition, phase state, and water uptake, are important to understanding their impacts on the Earth’s climate. The present study investigates these properties by focusing on the aged SSA (size range of 0.1–0.6 μm) and comparing with a similar size range nSSA, both generated at a peak of a phytoplankton bloom during a mesocosm study. The aged SSAs were generated by exposing nSSA to OH radicals with exposures equivalent to 4–5 days of atmospheric aging. Complementary filter-based thermal optical analysis, atomic force microscopy (AFM), and AFM photothermal infrared spectroscopy were utilized. Both nSSA and aged SSA showed an increase in the organic mass fraction with decreasing particle sizes. In addition, aging results in a further increase of the organic mass fraction, which can be attributed to new particle formation and oxidation of volatile organic compounds followed by condensation on pre-existing particles. The results are consistent with single-particle measurements that showed a relative increase in the abundance of aged SSA core–shells with significantly higher organic coating thickness, relative to nSSA. Increased hygroscopicity was observed for aged SSA core–shells, which had more oxygenated organic species. Rounded nSSA and aged SSA had similar hygroscopicity and no apparent changes in the composition. The observed changes in aged SSA physicochemical properties showed a significant size-dependence and particle-to-particle variability. Overall, results showed that the atmospheric aging can significantly influence the nSSA physicochemical properties, thus altering the SSA effects on the climate. American Chemical Society 2022-10-25 2022-11-17 /pmc/articles/PMC9677592/ /pubmed/36425339 http://dx.doi.org/10.1021/acsearthspacechem.2c00258 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Kaluarachchi, Chathuri P. Or, Victor W. Lan, Yiling Hasenecz, Elias S. Kim, Deborah Madawala, Chamika K. Dorcé, Glorianne P. Mayer, Kathryn J. Sauer, Jonathan S. Lee, Christopher Cappa, Christopher D. Bertram, Timothy H. Stone, Elizabeth A. Prather, Kimberly A. Grassian, Vicki H. Tivanski, Alexei V. Effects of Atmospheric Aging Processes on Nascent Sea Spray Aerosol Physicochemical Properties |
title | Effects
of Atmospheric Aging Processes on Nascent
Sea Spray Aerosol Physicochemical Properties |
title_full | Effects
of Atmospheric Aging Processes on Nascent
Sea Spray Aerosol Physicochemical Properties |
title_fullStr | Effects
of Atmospheric Aging Processes on Nascent
Sea Spray Aerosol Physicochemical Properties |
title_full_unstemmed | Effects
of Atmospheric Aging Processes on Nascent
Sea Spray Aerosol Physicochemical Properties |
title_short | Effects
of Atmospheric Aging Processes on Nascent
Sea Spray Aerosol Physicochemical Properties |
title_sort | effects
of atmospheric aging processes on nascent
sea spray aerosol physicochemical properties |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9677592/ https://www.ncbi.nlm.nih.gov/pubmed/36425339 http://dx.doi.org/10.1021/acsearthspacechem.2c00258 |
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