NARSTO EPA_SS_ATLANTA 1999 Rapid Single-Particle Mass Spectrometer Data
Entry ID: NARSTO_EPA_SS_ATL_RSMS

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Summary
Abstract: The NARSTO_EPA_SS_ATLANTA_RAPID_SPMS_DATA were obtained in August 1999 during the Atlanta Experiment of the U.S. EPA Particulate Matter Supersites Program.

During a month in the summer of 1999, individual aerosol particles were sized and analyzed using a Rapid Single-particle Mass Spectrometer (RSMS) in Atlanta. RSMS aerodynamically focuses one particle size at a time to the source region of a mass spectrometer and employs a 193 nm excimer laser to desorb and ionize the particle components. The ions are analyzed in a single time-of-flight mass spectrometer and the spectrum is digitally recorded. Spectra are only saved if the ion peak in the spectrum is above a threshold level. Background spectra were determined and flagged. Particle size scans were initiated periodically and each size was sampled until 30 particle hits were obtained, unless the sampling time became excessive. Aerodynamic particle sizes ranged from about 40 to 1300 nm and were partitioned into nine discrete size classes logarithmically spaced, roughly, over the range. Single particle data are valuable because for instance a) they are collected and analyzed real time so have excellent temporal resolution, b) the particle-to-particle composition variations (external mixing properties) can be assessed, and c) key particle sources are easily identified since the particles retain source characteristics. The data resulting from these measurements consist of an aerodynamic particle size and a positive mass spectrum of the components for each particle, along with the date and time of measurement and other incidental measurement parameters such as the laser pulse energy. Support for RSMS measurements was provided by the EPA Supersite program and additional funding from the EPA and NSF.

The U.S. EPA Particulate Matter (PM) Supersites Program was an ambient air monitoring research program from 1999-2004 designed to provide information of value to the atmospheric sciences, and human health and exposure research communities. Eight geographically diverse projects were chosen to specifically address these EPA research priorities: (1) to characterize PM, its constituents, precursors, co-pollutants, atmospheric transport, and its source categories that affect the PM in any region; (2) to address the research questions and scientific uncertainties about PM source-receptor and exposure-health effects relationships; and (3) to compare and evaluate different methods of characterizing PM including testing new and emerging measurement methods.

NARSTO (formerly North American Research Strategy for Tropospheric Ozone) is a public/private partnership, whose membership spans government, the utilities, industry, and academe throughout Mexico, the United States, and Canada. The primary mission is to coordinate and enhance policy-relevant scientific research and assessment of tropospheric pollution behavior; activities provide input for science-based decision-making and determination of workable, efficient, and effective strategies for local and regional air-pollution management. Data products from local, regional, and international monitoring and research programs are available.

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Description: NARSTO Quality Systems Science Center


Geographic Coverage
 N: 33.78 S: 33.78  E: -84.41  W: -84.41

Temporal Coverage
Start Date: 1999-08-01
Stop Date: 1999-08-31


Location Keywords
CONTINENT > NORTH AMERICA > UNITED STATES OF AMERICA > GEORGIA > ATLANTA


Science Keywords
ATMOSPHERE >AIR QUALITY >PARTICULATES    [Definition]


ISO Topic Category
CLIMATOLOGY/METEOROLOGY/ATMOSPHERE
ENVIRONMENT


Platform
FIELD INVESTIGATION    [Information]


Instrument
RSMS >Rapid Single-particle Mass Spectrometer    [Information]


Project
EOSDIS >Earth Observing System Data Information System    [Information]
NARSTO >North American Research Strategy for Tropospheric Ozone    [Information]
ESIP >Earth Science Information Partners Program    [Information]


Keywords
Jefferson Street Site
Particle: ion mass-to-charge (m/z) ratio
Single Particle Mass Spectra
RSMS-2
EOSDIS


Data Set Progress
COMPLETE


Data Center
Atmospheric Science Data Center, Science Directorate, Langley Research Center, NASA    [Information]
Data Center URL: http://eosweb.larc.nasa.gov/
Dataset ID: NARSTO_EPA_SS_ATLANTA_RAPID_SPMS_DATA

Data Center Personnel
Name: ASDC USER SERVICES
Phone: 757-864-8656
Email: support-asdc at earthdata.nasa.gov
Contact Address:
NASA Langley Atmospheric Science Data Center
User and Data Services
NASA Langley Research Center
Mail Stop 157D
City: Hampton
Province or State: VA
Postal Code: 23681-2199
Country: USA


Langley Research Center Distributed Active Archive Center, Science Directorate, Langley Research Center, NASA    [Information]
Data Center URL: http://eosweb.larc.nasa.gov/
Dataset ID: NARSTO_EPA_SS_ATLANTA_RAPID_SPMS_DATA

Data Center Personnel
Name: ASDC USER SERVICES
Phone: 757-864-8656
Email: support-asdc at earthdata.nasa.gov
Contact Address:
NASA Langley Atmospheric Science Data Center
User and Data Services
NASA Langley Research Center
Mail Stop 157D
City: Hampton
Province or State: VA
Postal Code: 23681-2199
Country: USA


Personnel
ASDC USER SERVICES
Role: DIF AUTHOR
Phone: 757-864-8656
Email: support-asdc at earthdata.nasa.gov
Contact Address:
NASA Langley Atmospheric Science Data Center
User and Data Services
NASA Langley Research Center
Mail Stop 157D
City: Hampton
Province or State: VA
Postal Code: 23681-2199
Country: USA


ANTHONY S. WEXLER
Role: TECHNICAL CONTACT
Role: INVESTIGATOR
Phone: 530-754-6558
Email: aswexler at ucdavis.edu


MURRAY V JOHNSON
Role: INVESTIGATOR
Email: mvj at udel.edu


Publications/References
Phares, D.J., K.P. Rhoads, and A.S. Wexler. 2002. Performance of a
single ultrafine particle mass spectrometer. Aerosol Sci. Tech.
36:583-592.

Phares, D.J., K.P. Rhoads, A.S. Wexler, and M.V. Johnston. 2001.
Size resolved ultrafine particle composition analysis Part 2:
Houston. J. Geophys. Res. In press.

Rhoads, K.P., D.J. Phares, A.S. Wexler, and M.V. Johnston. 2001.
Size-resolved ultrafine particle composition analysis Part1: Atlanta.
J. Geophys. Res. In press.

Creation and Review Dates
DIF Creation Date: 2003-12-01
Last DIF Revision Date: 2014-04-08

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