POLIPHON conversion factors for retrieving dust-related cloud condensation nuclei and ice-nucleating particle concentration profiles at oceanic sites

Aerosol-Cloud interactions (ACI) result in the largest uncertainties in the global radiation budget so far. To improve the current consideration of ACI in global circulation models, it is necessary to characterize the 3-D distribution of dust-related Cloud Condensation Nuclei Concentration (CCNC) an...

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Main Authors: He, Yun, Yin, Zhenping, Ansmann, Albert, Liu, Fuchao, Wang, Longlong, Jing, Dongzhe, Shen, Huijia
Format: Text
Language:English
Published: 2023
Subjects:
Online Access:https://doi.org/10.5194/amt-2023-4
https://amt.copernicus.org/preprints/amt-2023-4/
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spelling ftcopernicus:oai:publications.copernicus.org:amtd108940 2023-05-15T13:06:49+02:00 POLIPHON conversion factors for retrieving dust-related cloud condensation nuclei and ice-nucleating particle concentration profiles at oceanic sites He, Yun Yin, Zhenping Ansmann, Albert Liu, Fuchao Wang, Longlong Jing, Dongzhe Shen, Huijia 2023-01-23 application/pdf https://doi.org/10.5194/amt-2023-4 https://amt.copernicus.org/preprints/amt-2023-4/ eng eng doi:10.5194/amt-2023-4 https://amt.copernicus.org/preprints/amt-2023-4/ eISSN: 1867-8548 Text 2023 ftcopernicus https://doi.org/10.5194/amt-2023-4 2023-01-30T17:22:43Z Aerosol-Cloud interactions (ACI) result in the largest uncertainties in the global radiation budget so far. To improve the current consideration of ACI in global circulation models, it is necessary to characterize the 3-D distribution of dust-related Cloud Condensation Nuclei Concentration (CCNC) and Ice Nucleating Particle Concentration (INPC) globally. This can potentially be realized using the POLIPHON (POlarization LIdar PHOtometer Networking) method together with spaceborne lidar observations. However, dust-related conversion factors to convert bulk aerosol optical properties from lidar measurements to aerosol microphysical properties, are still less constrained in many regions, which limits the applications of POLIPHON method. Here we retrieve the essential dust-related conversion factors at the remote oceanic/coast sites using the historical AERONET (AErosol RObotic NETwork) databases. Depolarization-ratio-based dust ratios R d at 1020 nm are applied to identify the dust-occurring cases so that it can be possible to contain fine-mode dust dominated cases (after the preferential removal of large-size dust particles during transport), study the evolution of dust microphysical properties along the transoceanic pathway, and mitigate occasional interference of large-size marine aerosols. The newly proposed scheme is proven to be valid and feasible by intercomparisons with previous studies at nine sites in/near the deserts. The dust-related conversion factors are calculated at 20 oceanic/coast sites using both PD (pure dust) and PD+DDM (dust-dominated mixture) datasets. At nearly half sites, the conversion factors are solely calculated using the PD data sets; while at the rest sites, the participation of DDM datasets is required to ensure enough data points in the calculation. Evident variation trends in conversion factors are found for c v,d (extinction-to-volume, gradually decrease), c 250,d (extinction-to-particle (with radius >250 nm) number concentration, gradually increase) and c s,d ... Text Aerosol Robotic Network Copernicus Publications: E-Journals
institution Open Polar
collection Copernicus Publications: E-Journals
op_collection_id ftcopernicus
language English
description Aerosol-Cloud interactions (ACI) result in the largest uncertainties in the global radiation budget so far. To improve the current consideration of ACI in global circulation models, it is necessary to characterize the 3-D distribution of dust-related Cloud Condensation Nuclei Concentration (CCNC) and Ice Nucleating Particle Concentration (INPC) globally. This can potentially be realized using the POLIPHON (POlarization LIdar PHOtometer Networking) method together with spaceborne lidar observations. However, dust-related conversion factors to convert bulk aerosol optical properties from lidar measurements to aerosol microphysical properties, are still less constrained in many regions, which limits the applications of POLIPHON method. Here we retrieve the essential dust-related conversion factors at the remote oceanic/coast sites using the historical AERONET (AErosol RObotic NETwork) databases. Depolarization-ratio-based dust ratios R d at 1020 nm are applied to identify the dust-occurring cases so that it can be possible to contain fine-mode dust dominated cases (after the preferential removal of large-size dust particles during transport), study the evolution of dust microphysical properties along the transoceanic pathway, and mitigate occasional interference of large-size marine aerosols. The newly proposed scheme is proven to be valid and feasible by intercomparisons with previous studies at nine sites in/near the deserts. The dust-related conversion factors are calculated at 20 oceanic/coast sites using both PD (pure dust) and PD+DDM (dust-dominated mixture) datasets. At nearly half sites, the conversion factors are solely calculated using the PD data sets; while at the rest sites, the participation of DDM datasets is required to ensure enough data points in the calculation. Evident variation trends in conversion factors are found for c v,d (extinction-to-volume, gradually decrease), c 250,d (extinction-to-particle (with radius >250 nm) number concentration, gradually increase) and c s,d ...
format Text
author He, Yun
Yin, Zhenping
Ansmann, Albert
Liu, Fuchao
Wang, Longlong
Jing, Dongzhe
Shen, Huijia
spellingShingle He, Yun
Yin, Zhenping
Ansmann, Albert
Liu, Fuchao
Wang, Longlong
Jing, Dongzhe
Shen, Huijia
POLIPHON conversion factors for retrieving dust-related cloud condensation nuclei and ice-nucleating particle concentration profiles at oceanic sites
author_facet He, Yun
Yin, Zhenping
Ansmann, Albert
Liu, Fuchao
Wang, Longlong
Jing, Dongzhe
Shen, Huijia
author_sort He, Yun
title POLIPHON conversion factors for retrieving dust-related cloud condensation nuclei and ice-nucleating particle concentration profiles at oceanic sites
title_short POLIPHON conversion factors for retrieving dust-related cloud condensation nuclei and ice-nucleating particle concentration profiles at oceanic sites
title_full POLIPHON conversion factors for retrieving dust-related cloud condensation nuclei and ice-nucleating particle concentration profiles at oceanic sites
title_fullStr POLIPHON conversion factors for retrieving dust-related cloud condensation nuclei and ice-nucleating particle concentration profiles at oceanic sites
title_full_unstemmed POLIPHON conversion factors for retrieving dust-related cloud condensation nuclei and ice-nucleating particle concentration profiles at oceanic sites
title_sort poliphon conversion factors for retrieving dust-related cloud condensation nuclei and ice-nucleating particle concentration profiles at oceanic sites
publishDate 2023
url https://doi.org/10.5194/amt-2023-4
https://amt.copernicus.org/preprints/amt-2023-4/
genre Aerosol Robotic Network
genre_facet Aerosol Robotic Network
op_source eISSN: 1867-8548
op_relation doi:10.5194/amt-2023-4
https://amt.copernicus.org/preprints/amt-2023-4/
op_doi https://doi.org/10.5194/amt-2023-4
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