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Atmospheric photochemistry studies of pollutant emissions from transportation vehicles operating on alternative fuels

Author: H E Jeffries; K G Sexton; J Yu; University of North Carolina at Chapel Hill.; National Renewable Energy Laboratory (U.S.)
Publisher: Golden, Colo. : National Renewable Energy Laboratory, [1998]
Series: NREL/SR, 540-21426.
Edition/Format:   eBook : Document : National government publication : English
Database:WorldCat
Summary:
This project was undertaken with the goal of improving our ability to predict the changes in urban ozone resulting from the widespread use of alternative fuels in automobiles. This report presents the results in detail. It is clear that no single approach is adequate for determining the potential atmospheric benefits of alternative fuel use: both experimental and modeling studies are needed. In addition, fundamental  Read more...
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Details

Material Type: Document, Government publication, National government publication, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: H E Jeffries; K G Sexton; J Yu; University of North Carolina at Chapel Hill.; National Renewable Energy Laboratory (U.S.)
OCLC Number: 156915874
Notes: Title from title screen (viewed November 26, 2007).
"July 1998."
Description: xii, 298 p. : digital, PDF file
Details: Mode of access: Internet from the NREL web site. Address as of 11/26/07: http://www.nrel.gov/docs/legosti/fy98/21426.pdf; current access available via PURL.
Series Title: NREL/SR, 540-21426.
Responsibility: H. Jeffries, K. Sexton, and J. Yu, University of North Carolina.

Abstract:

This project was undertaken with the goal of improving our ability to predict the changes in urban ozone resulting from the widespread use of alternative fuels in automobiles. This report presents the results in detail. It is clear that no single approach is adequate for determining the potential atmospheric benefits of alternative fuel use: both experimental and modeling studies are needed. In addition, fundamental advances are needed to improve scientific understanding of reactivity.

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