An Investigation of Particulate Matter Air Pollution Using Caliop Observations
by
 
Toth, Travis Dean, author.

Title
An Investigation of Particulate Matter Air Pollution Using Caliop Observations

Author
Toth, Travis Dean, author.

ISBN
9780438062085

Personal Author
Toth, Travis Dean, author.

Physical Description
1 electronic resource (199 pages)

General Note
Source: Dissertation Abstracts International, Volume: 79-11(E), Section: B.
 
Advisors: Jianglong Zhang Committee members: James Campbell; Xiquan Dong; Cedric Grainger; Mark Vaughan; Xiaodong Zhang.

Abstract
Particulate matter with aerodynamic diameters smaller than 2.5 mum (PM2.5) contributes greatly to air pollution and poses significant threats to human health. Space-borne passive aerosol measurements, with their large spatial coverage, have been applied for estimating surface-based PM 2.5 concentrations. Specifically, column-integrated aerosol optical thickness (AOT) observations, like those from the National Aeronautics and Space Administration (NASA) Moderate Resolution Imaging Spectroradiometer (MODIS) and Multi-angle Imaging Spectroradiometer (MISR) instruments, have been leveraged for this task. In this doctoral research study, the issues and limitations with estimating PM2.5 from passively-retrieved MODIS and MISR AOT over the contiguous United States (CONUS) were first explored. Second, the potential of using active space-borne NASA Cloud-Aerosol Lidar with Orthogonal Polarization (CALIOP) near-surface aerosol extinction retrievals for PM2.5 estimation is studied. This includes exploration of various factors that affect CALIOP aerosol data processing, including the retrieval fill value (RFV) issue that results from CALIOP minimum aerosol detection limits. Next, an innovative approach for deriving PM2.5 concentrations directly from CALIOP near-surface aerosol extinction data has been explored using a bulk-mass-modeling-based method, and were validated against in situ PM2.5 from U.S. Environmental Protection Agency (EPA) ground stations. Lastly, temporal variations of CALIOP-based aerosol vertical distribution, including trends of near-surface aerosol loading, were examined globally and regionally to infer possible changes in surface air quality.

Local Note
School code: 0156

Subject Term
Atmospheric sciences.

Added Corporate Author
The University of North Dakota. Atmospheric Sciences.

Electronic Access
http://gateway.proquest.com/openurl?url_ver=Z39.88-2004&rft_val_fmt=info:ofi/fmt:kev:mtx:dissertation&res_dat=xri:pqm&rft_dat=xri:pqdiss:10813550


Shelf NumberItem BarcodeShelf LocationShelf LocationHolding Information
XX(692415.1)692415-1001Proquest E-Thesis CollectionProquest E-Thesis Collection