DocumentCode
1666939
Title
Experimental program of the pulsed corona tar cracker
Author
van Heesch, E.J.M. ; Pemen, A.J.M. ; Yan, Keping ; van Paasen, S.V.B. ; Ptasinski, K.J. ; Matyas, Z. ; Huijbrechts, P.A.H.J. ; Hultermans, B.O.E. ; Nicoletti, A. ; Blom, P.P.M. ; Zacharias, P.
Author_Institution
Eindhoven Univ. of Technol., Netherlands
Volume
1
fYear
1999
Firstpage
515
Abstract
We are concentrating on the development of pulsed corona discharges to crack heavy tar components (hydrocarbons) into lighter ones. The method has the advantage that it can operate at a high temperature, and be retrofitted to existing installations. The corona discharge is energized by 100-150 ns wide voltage pulses (100 kV) at a continuous repetition rate of 600-1000 pulses per second. The power dissipated by the corona discharges is 1.5 kW average and 50 MW peak in each pulse. To be cracked by discharges, the hydrocarbons of the tar mixture need to be gaseous and therefore, the corona reactor must operate at a high temperature. In the first phase of the experiments the reactor will run at a modest temperature of 150/spl deg/C. The reactor is a 1-3 m long stainless steel cylinder, 0.25 m diameter with a corona wire along the axis. The pressure will be 1 atmosphere.
Keywords
corona; pulsed power technology; 0.25 m; 1 atm; 1 to 3 m; 1.5 kW; 100 kV; 100 to 150 ns; 150 C; 50 MW; continuous repetition rate; corona reactor; corona wire; gaseous hydrocarbons; heavy tar components cracking; power dissipation; pulsed corona tar cracker; stainless steel cylinder; tar mixture; Biomass; Cleaning; Combustion; Corona; Engines; Hydrocarbons; Inductors; Solar energy; Temperature; Turbines;
fLanguage
English
Publisher
ieee
Conference_Titel
Pulsed Power Conference, 1999. Digest of Technical Papers. 12th IEEE International
Conference_Location
Monterey, CA, USA
Print_ISBN
0-7803-5498-2
Type
conf
DOI
10.1109/PPC.1999.825523
Filename
825523
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