Pre‐Activation of Ice Nucleating Particles in Deposition Nucleation Mode: Evidence From Measurement Using a Static Vacuum Water Vapor Diffusion Chamber in Xinjiang, China

Abstract Pre‐activation of ice nucleating particles (INPs) is a potential mechanism to enhance ice generation in mixed‐phase clouds, but evidence of INP pre‐activation is still limited. In this study, the pre‐activation of INPs in deposition mode is investigated using refreezing experiments in a sta...

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Main Authors: X. Jing, J. Yang, T. Li, J. Hu, C. He, Y. Yin, P. J. DeMott, Z. Wang, H. Jiang, K. Chen
Format: Article
Language:English
Published: Wiley 2022-08-01
Series:Geophysical Research Letters
Online Access:https://doi.org/10.1029/2022GL099468
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author X. Jing
J. Yang
T. Li
J. Hu
C. He
Y. Yin
P. J. DeMott
Z. Wang
H. Jiang
K. Chen
author_facet X. Jing
J. Yang
T. Li
J. Hu
C. He
Y. Yin
P. J. DeMott
Z. Wang
H. Jiang
K. Chen
author_sort X. Jing
collection DOAJ
description Abstract Pre‐activation of ice nucleating particles (INPs) is a potential mechanism to enhance ice generation in mixed‐phase clouds, but evidence of INP pre‐activation is still limited. In this study, the pre‐activation of INPs in deposition mode is investigated using refreezing experiments in a static vacuum water vapor diffusion chamber with aerosols sampled in Xinjiang, China. The results indicate that the activation efficiency of INP was enhanced after pre‐activation. Statistically, the INP concentration increased by 266%, 112%, and 70% at −10°C, −14°C, and −17°C after pre‐activation, and more than half of the samples showed an increase in INP concentration. The increase in INP concentration has a positive correlation with the primary INP concentration before pre‐activation. The analyses provide new evidence that the pre‐activated INPs can act as better nuclei at temperature as warm as −10°C, and highlight the importance to find a way to consider this mechanism in models.
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institution OA Journals
issn 0094-8276
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publishDate 2022-08-01
publisher Wiley
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series Geophysical Research Letters
spelling doaj-art-70bdfc7a4d3a461c8d694903865e89122025-08-20T02:12:53ZengWileyGeophysical Research Letters0094-82761944-80072022-08-014915n/an/a10.1029/2022GL099468Pre‐Activation of Ice Nucleating Particles in Deposition Nucleation Mode: Evidence From Measurement Using a Static Vacuum Water Vapor Diffusion Chamber in Xinjiang, ChinaX. Jing0J. Yang1T. Li2J. Hu3C. He4Y. Yin5P. J. DeMott6Z. Wang7H. Jiang8K. Chen9Collaborative Innovation Center on Forecast and Evaluation of Meteorological Disasters (CIC‐FEMD), Key Laboratory of Meteorological Disaster, Ministry of Education (KLME), Key Laboratory for Aerosol Cloud‐Precipitation of China Meteorological Administration, Precision Regional Earth Modeling and Information Center (PRMIC) Nanjing University of Information Science & Technology Nanjing ChinaCollaborative Innovation Center on Forecast and Evaluation of Meteorological Disasters (CIC‐FEMD), Key Laboratory of Meteorological Disaster, Ministry of Education (KLME), Key Laboratory for Aerosol Cloud‐Precipitation of China Meteorological Administration, Precision Regional Earth Modeling and Information Center (PRMIC) Nanjing University of Information Science & Technology Nanjing ChinaCollaborative Innovation Center on Forecast and Evaluation of Meteorological Disasters (CIC‐FEMD), Key Laboratory of Meteorological Disaster, Ministry of Education (KLME), Key Laboratory for Aerosol Cloud‐Precipitation of China Meteorological Administration, Precision Regional Earth Modeling and Information Center (PRMIC) Nanjing University of Information Science & Technology Nanjing ChinaCollaborative Innovation Center on Forecast and Evaluation of Meteorological Disasters (CIC‐FEMD), Key Laboratory of Meteorological Disaster, Ministry of Education (KLME), Key Laboratory for Aerosol Cloud‐Precipitation of China Meteorological Administration, Precision Regional Earth Modeling and Information Center (PRMIC) Nanjing University of Information Science & Technology Nanjing ChinaCollaborative Innovation Center on Forecast and Evaluation of Meteorological Disasters (CIC‐FEMD), Key Laboratory of Meteorological Disaster, Ministry of Education (KLME), Key Laboratory for Aerosol Cloud‐Precipitation of China Meteorological Administration, Precision Regional Earth Modeling and Information Center (PRMIC) Nanjing University of Information Science & Technology Nanjing ChinaCollaborative Innovation Center on Forecast and Evaluation of Meteorological Disasters (CIC‐FEMD), Key Laboratory of Meteorological Disaster, Ministry of Education (KLME), Key Laboratory for Aerosol Cloud‐Precipitation of China Meteorological Administration, Precision Regional Earth Modeling and Information Center (PRMIC) Nanjing University of Information Science & Technology Nanjing ChinaDepartment of Atmospheric Science Colorado State University Fort Collins CO USADepartment of Atmospheric and Oceanic Sciences University of Colorado Boulder CO USACollaborative Innovation Center on Forecast and Evaluation of Meteorological Disasters (CIC‐FEMD), Key Laboratory of Meteorological Disaster, Ministry of Education (KLME), Key Laboratory for Aerosol Cloud‐Precipitation of China Meteorological Administration, Precision Regional Earth Modeling and Information Center (PRMIC) Nanjing University of Information Science & Technology Nanjing ChinaCollaborative Innovation Center on Forecast and Evaluation of Meteorological Disasters (CIC‐FEMD), Key Laboratory of Meteorological Disaster, Ministry of Education (KLME), Key Laboratory for Aerosol Cloud‐Precipitation of China Meteorological Administration, Precision Regional Earth Modeling and Information Center (PRMIC) Nanjing University of Information Science & Technology Nanjing ChinaAbstract Pre‐activation of ice nucleating particles (INPs) is a potential mechanism to enhance ice generation in mixed‐phase clouds, but evidence of INP pre‐activation is still limited. In this study, the pre‐activation of INPs in deposition mode is investigated using refreezing experiments in a static vacuum water vapor diffusion chamber with aerosols sampled in Xinjiang, China. The results indicate that the activation efficiency of INP was enhanced after pre‐activation. Statistically, the INP concentration increased by 266%, 112%, and 70% at −10°C, −14°C, and −17°C after pre‐activation, and more than half of the samples showed an increase in INP concentration. The increase in INP concentration has a positive correlation with the primary INP concentration before pre‐activation. The analyses provide new evidence that the pre‐activated INPs can act as better nuclei at temperature as warm as −10°C, and highlight the importance to find a way to consider this mechanism in models.https://doi.org/10.1029/2022GL099468
spellingShingle X. Jing
J. Yang
T. Li
J. Hu
C. He
Y. Yin
P. J. DeMott
Z. Wang
H. Jiang
K. Chen
Pre‐Activation of Ice Nucleating Particles in Deposition Nucleation Mode: Evidence From Measurement Using a Static Vacuum Water Vapor Diffusion Chamber in Xinjiang, China
Geophysical Research Letters
title Pre‐Activation of Ice Nucleating Particles in Deposition Nucleation Mode: Evidence From Measurement Using a Static Vacuum Water Vapor Diffusion Chamber in Xinjiang, China
title_full Pre‐Activation of Ice Nucleating Particles in Deposition Nucleation Mode: Evidence From Measurement Using a Static Vacuum Water Vapor Diffusion Chamber in Xinjiang, China
title_fullStr Pre‐Activation of Ice Nucleating Particles in Deposition Nucleation Mode: Evidence From Measurement Using a Static Vacuum Water Vapor Diffusion Chamber in Xinjiang, China
title_full_unstemmed Pre‐Activation of Ice Nucleating Particles in Deposition Nucleation Mode: Evidence From Measurement Using a Static Vacuum Water Vapor Diffusion Chamber in Xinjiang, China
title_short Pre‐Activation of Ice Nucleating Particles in Deposition Nucleation Mode: Evidence From Measurement Using a Static Vacuum Water Vapor Diffusion Chamber in Xinjiang, China
title_sort pre activation of ice nucleating particles in deposition nucleation mode evidence from measurement using a static vacuum water vapor diffusion chamber in xinjiang china
url https://doi.org/10.1029/2022GL099468
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