Javascript must be enabled to continue!
Understanding Aitken Mode Aerosol Variability over the Southern Ocean and Antarctica: Insights from Cloud Condensation Nuclei Data
View through CrossRef
Aitken mode aerosol particles play an important role influencing cloud
properties and sustenance, acting as a reservoir of potential cloud
condensation nuclei against precipitation scavenging. However, there is
limited data on Aitken mode aerosols. In this study, we develop a method
to estimate Aitken mode aerosol concentrations and size distribution
using cloud condensation nuclei measurements (CCN) and κ-Köhler theory.
The performance of this method is evaluated using scanning mobility
particle sizer (SMPS) data from recent field campaigns to demonstrate
its skills and applicability. The method reasonably estimates Aitken-
and accumulation-mode aerosol concentrations, achieving correlations of
0.7–0.9 with only modest biases (mean fractional bias within ±23% for
Aitken mode and ±34% for accumulation-mode). This method is further
applied to measurements collected over the Southern Ocean and Antarctica
in recent years from multiple platforms, including ground sites,
aircraft, and ships, to derive Aitken and accumulation-mode aerosol
concentrations. Using the derived data, we examine the seasonal cycle,
latitudinal variations, and vertical distribution of aerosols. Aitken
mode aerosol concentrations are elevated over the Southern Ocean and
Antarctica during the austral summer similar to the accumulation mode.
In the austral summer, the free troposphere has more Aitken mode
aerosols and fewer accumulation mode aerosols than the boundary layer,
and thus likely serves as an important source of cloud-forming aerosol
while also diluting the accumulation mode.
Title: Understanding Aitken Mode Aerosol Variability over the Southern Ocean and Antarctica: Insights from Cloud Condensation Nuclei Data
Description:
Aitken mode aerosol particles play an important role influencing cloud
properties and sustenance, acting as a reservoir of potential cloud
condensation nuclei against precipitation scavenging.
However, there is
limited data on Aitken mode aerosols.
In this study, we develop a method
to estimate Aitken mode aerosol concentrations and size distribution
using cloud condensation nuclei measurements (CCN) and κ-Köhler theory.
The performance of this method is evaluated using scanning mobility
particle sizer (SMPS) data from recent field campaigns to demonstrate
its skills and applicability.
The method reasonably estimates Aitken-
and accumulation-mode aerosol concentrations, achieving correlations of
0.
7–0.
9 with only modest biases (mean fractional bias within ±23% for
Aitken mode and ±34% for accumulation-mode).
This method is further
applied to measurements collected over the Southern Ocean and Antarctica
in recent years from multiple platforms, including ground sites,
aircraft, and ships, to derive Aitken and accumulation-mode aerosol
concentrations.
Using the derived data, we examine the seasonal cycle,
latitudinal variations, and vertical distribution of aerosols.
Aitken
mode aerosol concentrations are elevated over the Southern Ocean and
Antarctica during the austral summer similar to the accumulation mode.
In the austral summer, the free troposphere has more Aitken mode
aerosols and fewer accumulation mode aerosols than the boundary layer,
and thus likely serves as an important source of cloud-forming aerosol
while also diluting the accumulation mode.
Related Results
Microphysical processing of aerosol particles in orographic clouds
Microphysical processing of aerosol particles in orographic clouds
Abstract. An explicit and detailed treatment of cloud-borne particles allowing for the consideration of aerosol cycling in clouds has been implemented into COSMO-Model, the regiona...
Experimental studies on cloud condensation nuclei activation and cloud microphysical properties
Experimental studies on cloud condensation nuclei activation and cloud microphysical properties
Atmospheric aerosol particles have the ability to affect climate through cloud interactions and direct scattering and absorption of radiation. These aerosol particles can also affe...
A holistic aerosol model for Uranus and Neptune, including Dark Spots
A holistic aerosol model for Uranus and Neptune, including Dark Spots
<p>Previous studies of the reflectance spectra of Uranus and Neptune concentrated on individual, narrow wavelength regions, inferring solutions for the vertical struc...
Microphysical processing of aerosol particles in orographic clouds
Microphysical processing of aerosol particles in orographic clouds
Abstract. An explicit and detailed treatment of cloud-borne particles allowing for the consideration of aerosol cycling in clouds has been implemented in the regional weather forec...
CLOUD COMPUTING - NAVIGATING THE DIGITAL SKY
CLOUD COMPUTING - NAVIGATING THE DIGITAL SKY
“Cloud Computing – Navigating the Digital Sky” is an extensive guide designed to provide a thorough understanding of cloud computing, an essential technology in today’s digital age...
A six year satellite-based assessment of the regional variations in aerosol indirect effects
A six year satellite-based assessment of the regional variations in aerosol indirect effects
Abstract. Since aerosols act as cloud condensation nuclei (CCN) for cloud water droplets, changes in aerosol concentrations having significant impacts on the corresponding cloud pr...
Aerosol-cloud interaction inferred from MODIS satellite data and global aerosol models
Aerosol-cloud interaction inferred from MODIS satellite data and global aerosol models
Abstract. We have used the Modis satellite data and two global aerosol models to investigate relationships between aerosol optical depth (AOD) and cloud parameters that may be affe...
Cloud condensation nuclei over the Southern Ocean: wind dependence and seasonal cycles
Cloud condensation nuclei over the Southern Ocean: wind dependence and seasonal cycles
Abstract. Multi-decadal observations of aerosol microphysical properties from regionally representative sites can be used to challenge regional or global numerical models that simu...

