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Role of Sea Surface Microlayer Properties in Cloud Formation

Brianna N. Hendrickson; Sarah D. Brooks; Daniel C. O. Thornton; Richard H. Moore; Ewan Crosbie; Luke D. Ziemba; Craig A. Carlson; Nicholas Baetge; Jessica A. Mirrielees; Alyssa N. Alsante
Frontiers in Marine Science · Vol. 7 · 2021

Abstract

To date, the relative contribution of primary marine organic matter to the subset of atmospheric particles that nucleate cloud droplets is highly uncertain. Here, cloud condensation nuclei (CCN) measurements were conducted on aerosolized sea surface microlayer (SML) samples collected from the North Atlantic Ocean during the NASA North Atlantic Aerosols and Marine Ecosystems Study (NAAMES), κ values were predicted for three representative high molecular weight (HMW) organic components of marine aerosol: 6-glucose, humic acid, and ribulose-1,5-bisphosphate carboxylase/oxygenase (RuBisCO). The predicted κ values for pure organic aerosols varied by only ±0.01 across all of the organics chosen. For the desalted SML samples, calculations assuming an organic composition of entirely RuBisCO provided the closest predicted κ values for the desalted SML samples with a mean κ value of 0.53 ± 0.10. These results indicate that it is the sea salt in the SML which drives the cloud formation potential of marine aerosols. While the presence of organic material from the ocean surface waters may increase aerosol mass due to enrichment processes, cloud formation potential of mixed organic/salt primary marine aerosols will be slightly weakened or unchanged compared to sea spray aerosol.

Bibliographic Information

JournalFrontiers in Marine Science
PublisherFrontiers
Publication Date2021-01-18
Publication Year2021
Volume7
Document TypeJournal Article
eISSN2296-7745
DOI10.3389/fmars.2020.596225
SubjectMarine science; fisheries; aquaculture; pollution; ocean observation; policy

Access Information

NARA Access CoverageOA / free full text
Journal Homepagehttps://www.frontiersin.org/journals/marine-science
Publisher PageOpen Publisher Page
This article is openly available from the publisher.