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Eckermann, Oliver; Wex, Heike; Jurányi, Zsófia; Weller, Rolf; Henning, Silvia: Frozen fraction of INP samples from Antarctica, Neumayer Station III, measured with the Leipzig Ice Nucleating Array [dataset]. PANGAEA, https://doi.pangaea.de/10.1594/PANGAEA.974191 (dataset in review), In: Eckermann, O et al.: INP data from Antarctica, Neumayer Station III, during two years [dataset bundled publication]. PANGAEA, https://doi.pangaea.de/10.1594/PANGAEA.974187 (dataset in review)

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Abstract:
Ice nucleating particles (INPs) are important atmospheric particles influencing the formation of ice in clouds. Their sources and atmospheric concentrations currently are subject of plenty of research.
The here provided data on INPs (Ice Nucleating Particles) were derived from particles collected onto filters at the German Antarctic Neumayer Station III in Queen Maud Land, East Antarctica continuously for two years from December 2019 until December 2021. Filters were analyzed at the TROPOS ice-lab in Germany using well established off-line techniques. Detailed information on sampling and data evaluation are given in the abovementioned publication which this data-set accompanies.
Measured frozen fractions are provided for samples, field blinds and heated samples, INP concentrations are provided for samples both with and without subtracting the background.
Keyword(s):
Antarctica; ice nucleating particles (INP); Neumayer Station
Related to:
Wex, Heike; Eckermann, Oliver; Jurányi, Zsófia; Weller, Rolf; Mangold, Alexander; Van Overmeiren, P; Zeppenfeld, Sebastian; van Pinxteren, Manuela; Dall'Osto, Manuel; Henning, Silvia (submitted): Antarctica's Unique Atmosphere: Really Low INP concentrations. Geophysical Research Letters
Funding:
German Research Foundation (DFG), grant/award no. 442925270: Variation of Antarctic Cloud Condensation (CCN) and ice nucleating particle (INP) concentrations and properties at NEumayer Station compared to their values in the Arctic at Villum Research Station (VACCINE+)
German Research Foundation (DFG), grant/award no. 5472008: Priority Programme 1158 Antarctic Research with Comparable Investigations in Arctic Sea Ice Areas
Coverage:
Latitude: -70.650000 * Longitude: -8.250000
Date/Time Start: 1983-01-01T00:00:00 * Date/Time End: 1983-01-01T00:00:00
Minimum Elevation: 42.0 m * Maximum Elevation: 42.0 m
Event(s):
Neumayer_SPUSO * Latitude: -70.650000 * Longitude: -8.250000 * Date/Time: 1983-01-01T00:00:00 * Elevation: 42.0 m * Location: Dronning Maud Land, Antarctica * Campaign: Neumayer_based * Basis: NEUMAYER III * Method/Device: Air chemistry observatory (SPUSO)
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
1Temperature, technicalT tech°CHenning, SilviaLeipzig Ice Nucleation Array (LINA)
2Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP44
3Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP46
4Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP48
5Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP50
6Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP52
7Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP54
8Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP56
9Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP58
10Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP60
11Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP62
12Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP64
13Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP66
14Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP70
15Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP72
16Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP74
17Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP76
18Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP78
19Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP80
20Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP82
21Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP84
22Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP86
23Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP88
24Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP89
25Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP90
26Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP92
27Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP93
28Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP94
29Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP96
30Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP97
31Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP100
32Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP101
33Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP103
34Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP105
35Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP106
36Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP108
37Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP110
38Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP111
39Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP113
40Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP115
41Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP116
42Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP118
43Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP120
44Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP121
45Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP127
46Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP129
47Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP131
48Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP133
49Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP135
50Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP137
51Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP141
52Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP143
53Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP145
54Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP147
55Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP152
56Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP154
57Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP156
58Ice nucleating particle, frozen fractionINP frozen fracHenning, SilviaLeipzig Ice Nucleation Array (LINA)sample INP159
License:
Creative Commons Attribution 4.0 International (CC-BY-4.0) (License comes into effect after moratorium ends)
Status:
Curation Level: Enhanced curation (CurationLevelC)
Size:
20938 data points

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