Difference between revisions of "Networking of Air Quality Data"

From Earth Science Information Partners (ESIP)
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[http://scholar.google.com/scholar?num=100&hl=en&lr=&q=AIRNow+Health Google Scholar Search - AirNOW and health]
 
[http://scholar.google.com/scholar?num=100&hl=en&lr=&q=AIRNow+Health Google Scholar Search - AirNOW and health]
===Emissions Planning===
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===Emissions Estimation and Planning===
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An interesting application of the hourly AirNOW data pertains to improved estimation of emissions. Many 
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[http://scholar.google.com/scholar?num=100&hl=en&lr=&q=AIRNow+Emission Google Scholar Search - AirNOW and Emission]
 
[http://scholar.google.com/scholar?num=100&hl=en&lr=&q=AIRNow+Emission Google Scholar Search - AirNOW and Emission]
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===AQ Trends and Accountability===
 
===AQ Trends and Accountability===
 
[http://scholar.google.com/scholar?num=100&hl=en&lr=&q=AIRNow+Trend Google Scholar Search - AirNOW and Trend]
 
[http://scholar.google.com/scholar?num=100&hl=en&lr=&q=AIRNow+Trend Google Scholar Search - AirNOW and Trend]

Revision as of 19:18, February 25, 2008

Backlinks


EPA Applications of Air Quality Data

The primary purpose of AirNOW is to deliver air quality status and forecast to the public. However, the AIRNow program delivers useful information to many different applications spanning several societal benefit areas including, health and ecological effect, disasters, and others.

For more information, the reader is referred to the AirNOW and AirNOW Tech websites. A structured description of the AIRNow data system can be found on the AirNOW profile. A community workspace, the AIRNOW dataspace, facilitates the gathering of community contributed comments, resources, and feedback related to AirNOW.

Public Information

Delineating the numerous pathways in which the AirNOW data are transmitted to the public is beyond the scope of this report.

Google Scholar


Health/Exp. Assessment

In recent years the health effects of air pollutants in the U.S. are primarily attributed to surface ozone and fine particles. The AirNOW network provides monitoring data for these two pollutants. The companion network is the regulatory network which uses daily average filter samples, collected every third day to characterize the PM2.5 pattern. Health exposures during short-term fine particle peaks, lasting a few hours, and the exposure during the off days cannot be estimated from the regulatory PM2.5 FRM sampling network. In the past, epidemiological and event-based health studies had to rely on PM2.5 surrogates such as visibility data to associate health effect measures with the corresponding PM2.5 exposure.

For this reason the continuous measurements of PM2.5 allows better association of health and pollution signals. This in turn should permit the development of more suitable air quality standards for PM2.5. The continuous AirNOW monitoring data for ozone is compatible to the continuous ozone monitors in the regulatory ozone network.


Google Scholar Search - AirNOW and health

Emissions Estimation and Planning

An interesting application of the hourly AirNOW data pertains to improved estimation of emissions. Many

Google Scholar Search - AirNOW and Emission

AQ Trends and Accountability

Google Scholar Search - AirNOW and Trend

Intercontinental Transport Policy

Google Scholar Search - AirNOW and Intercontinental Transport

Science Support

Transport, Vertical Exchange Peocesses; Chemistry, Emission (weekly cycle)

NAAQS

Google Scholar - AIRNow and NAAQS

  • Regulatory (Except Event)
  • Regional Haze Rule (RPO)

NASA Applications of Air Quality Data

NOAA Applications of Air Quality Data

Model Eveluation (Assimilations/Verification)

Academic Applications of Air Quality Data