PAH growth and soot formation in the pyrolysis of acetylene and benzene at high temperatures and pressures: Modeling and experiment

Böhm H, Jander H, Tanke D (1998)
PROCEEDINGS OF THE COMBUSTION INSTITUTE 27(1): 1605-1612.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
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Autor*in
Böhm, Heidi; Jander, Helga; Tanke, D.
Erscheinungsjahr
1998
Zeitschriftentitel
PROCEEDINGS OF THE COMBUSTION INSTITUTE
Band
27
Ausgabe
1
Seite(n)
1605-1612
ISSN
1540-7489
Page URI
https://pub.uni-bielefeld.de/record/1882921

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Böhm H, Jander H, Tanke D. PAH growth and soot formation in the pyrolysis of acetylene and benzene at high temperatures and pressures: Modeling and experiment. PROCEEDINGS OF THE COMBUSTION INSTITUTE. 1998;27(1):1605-1612.
Böhm, H., Jander, H., & Tanke, D. (1998). PAH growth and soot formation in the pyrolysis of acetylene and benzene at high temperatures and pressures: Modeling and experiment. PROCEEDINGS OF THE COMBUSTION INSTITUTE, 27(1), 1605-1612.
Böhm, H., Jander, H., and Tanke, D. (1998). PAH growth and soot formation in the pyrolysis of acetylene and benzene at high temperatures and pressures: Modeling and experiment. PROCEEDINGS OF THE COMBUSTION INSTITUTE 27, 1605-1612.
Böhm, H., Jander, H., & Tanke, D., 1998. PAH growth and soot formation in the pyrolysis of acetylene and benzene at high temperatures and pressures: Modeling and experiment. PROCEEDINGS OF THE COMBUSTION INSTITUTE, 27(1), p 1605-1612.
H. Böhm, H. Jander, and D. Tanke, “PAH growth and soot formation in the pyrolysis of acetylene and benzene at high temperatures and pressures: Modeling and experiment”, PROCEEDINGS OF THE COMBUSTION INSTITUTE, vol. 27, 1998, pp. 1605-1612.
Böhm, H., Jander, H., Tanke, D.: PAH growth and soot formation in the pyrolysis of acetylene and benzene at high temperatures and pressures: Modeling and experiment. PROCEEDINGS OF THE COMBUSTION INSTITUTE. 27, 1605-1612 (1998).
Böhm, Heidi, Jander, Helga, and Tanke, D. “PAH growth and soot formation in the pyrolysis of acetylene and benzene at high temperatures and pressures: Modeling and experiment”. PROCEEDINGS OF THE COMBUSTION INSTITUTE 27.1 (1998): 1605-1612.

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