Identification of Tetrahydrofuran Reaction Pathways in Premixed Flames

Author:

Kasper Tina,Lucassen Arnas1,Jasper Ahren W.2,Li Wenjun3,Westmoreland Philip R.3,Kohse-Höinghaus Katharina1,Yang Bin4,Wang Juan4,Cool Terrill A.4,Hansen Nils2

Affiliation:

1. Bielefeld University, Department of Chemistry, Bielefeld, Deutschland

2. Sandia National Laboratories, Combustion Research Facility, Livermore, CA 94551, U.S.A.

3. North Carolina State University, Department of Chemical and Biomolecular Engineerin, Raleigh, NC 27695, U.S.A.

4. Cornell University, School of Applied Engineering Physics, Ithaca, NY 14853, U.S.A.

Abstract

Abstract Premixed low-pressure tetrahydrofuran/oxygen/argon flames are investigated by photoionization molecular-beam mass spectrometry using vacuum-ultraviolet synchrotron radiation. For two equivalence ratios (φ = 1.00 and 1.75), mole fractions are measured as a function of distance from the burner for almost 60 intermediates with molar masses ranging from 2 (H2) to 88 (C4H6O2), providing a broad database for flame modeling studies. The isomeric composition is resolved by comparisons between experimental photoionization efficiency data and theoretical simulations, based on calculated ionization energies and Franck-Condon factors. Special emphasis is put on the resolution of the first reaction steps in the fuel destruction. The photoionization experiments are complemented by electron-ionization molecular-beam mass-spectrometry measurements that provide data with high mass resolution. For three additional flames with intermediate equivalence ratios (φ = 1.20, 1.40 and 1.60), mole fractions of major species and photoionization efficiency spectra of intermediate species are reported, extending the database for the development of chemical kinetic models.

Publisher

Walter de Gruyter GmbH

Subject

Physical and Theoretical Chemistry

Reference1 articles.

1. References ) Combust ) Combust - brook Van Tiggelen ) Combust and Rudolph and Biomass SAE Paper No and Lifshitz and Lifshitz and and and;Cool;Inst Int Flame Int Phys Chem A Inst Int Inst Chem Chem Phys Flame Chem Int Ed Nature Inst Sci Technol Chem Kinet Phys Chem Phys Chem Phys Chem Phys Chem Phys Chem Inst Phys Chem A Chem Flame Phys Chem A Quantum Chem Sci Technol Inst,2007

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