globalchange  > 影响、适应和脆弱性
项目编号: 1546136
项目名称:
Modeling Aqueous Secondary Organic Aerosol Formation
作者: V. Faye McNeill
承担单位: Columbia University
批准年: 2014
开始日期: 2015-12-01
结束日期: 2018-11-30
资助金额: USD415385
资助来源: US-NSF
项目类别: Standard Grant
国家: US
语种: 英语
特色学科分类: Geosciences - Atmospheric and Geospace Sciences
英文关键词: formation ; aerosol liquid water ; gas-aerosol model ; aerosol mass ; aqsoa formation scheme ; soa formation ; other soa formation scheme ; model ; aerosol study ; simplegamma aqueous aerosol soa formation scheme ; aqueous secondary organic aerosol
英文摘要: The objective of this project is to develop a better understanding of chemical processes occurring in cloud droplets and wet atmospheric particles that can lead to the formation of secondary small particles in the atmosphere. A model will be applied to data collected in the field in 2013 during the Southern Oxidant and Aerosol Study to evaluate the fate of natural emissions to the atmosphere. This research effort will improve the understanding of factors that influence the formation of small particles through processing in cloud droplets and aerosol liquid water, hence leading to improved models of atmospheric chemistry, air quality and climate.

State-of-the-art modeling approaches will be used to evaluate the formation of aqueous Secondary Organic Aerosol (aqSOA) and their impacts on aerosol mass, composition, and optical properties. Aqueous processing allows SOA formation from highly volatile species, including oxidation products of isoprene, such as glyoxal and isoprene epoxydiols (IEPOX). A photochemical box model, Gas-Aerosol Model for Mechanism Analysis (GAMMA) and its simplified version (simpleGAMMA), will be applied to analyses of field data using limited gas-phase tracer inputs. SimpleGAMMA was developed to be computationally efficient and suitable for coupling with larger-scale atmospheric chemistry models.

A detailed intercomparison will be conducted of the SimpleGAMMA aqueous aerosol SOA formation scheme and other SOA formation schemes, such as the IEPOX SOA scheme from the Community Multi-scale Air Quality (CMAQ) model. The PI will also introduce or update aqSOA formation schemes in several 3D regional and global models including GEOS-Chem, GISS ModelIE2 Earth System Model, and WRF-Chem. This work will result in improved prognostic capabilities for atmospheric chemistry models.
资源类型: 项目
标识符: http://119.78.100.158/handle/2HF3EXSE/93047
Appears in Collections:影响、适应和脆弱性
气候减缓与适应

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Recommended Citation:
V. Faye McNeill. Modeling Aqueous Secondary Organic Aerosol Formation. 2014-01-01.
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