DocumentCode :
1305530
Title :
Large area pulsed corona discharge in water for disinfection and pollution control
Author :
Hartmann, Werner ; Roemheld, Michael ; Rohde, Klaus-Dieter ; Spiess, Franz-Josef
Author_Institution :
Siemens AG Corp. Technol., Erlangen, Germany
Volume :
16
Issue :
4
fYear :
2009
fDate :
8/1/2009 12:00:00 AM
Firstpage :
1061
Lastpage :
1065
Abstract :
To investigate the efficiency of submerged pulse corona (SPC) discharges in water we built a laboratory scale, parallel-plate reactor that is part of a closed loop water circulation system. A pulsed voltage is applied across the electrodes. One of the electrodes is coated with a porous ceramic layer to create local field enhancements to initiate corona discharges. For energization of the SPC reactor a pulse generator was developed which is based on a capacitor discharge initiated by a semiconductor switch. A pulse transformer, followed by two magnetic pulse compression stages, produces voltage pulses with amplitudes of up to 30 kV at a pulse width of 0.3 ¿s. Simulation of the circuit behavior leads to good agreement with voltage and current measurements. Details of the pulse generator and first experimental results concerning the efficiency of radical production are presented. Depending on the conductivity of the water to be treated, pulse currents of > 600 A at a voltage of 20 kV to > 30 kV are obtained for electrode sizes of around 50 cm2. The efficiency of the radical production is measured in terms of the hydrogen peroxide (H2O2) concentration, which is formed by recombination of hydroxyl radicals (OH.) at sufficiently high concentrations downstream of the plasma reactor. At pulse repetition rates of 20 to 100 Hz, H2O2 concentrations of several mg/l are produced, at efficiencies in the range of up to ¿1 g/kWh.
Keywords :
corona; pulse generators; pulse transformers; water pollution control; H2O2; closed loop water circulation system; hydrogen peroxide concentration; hydroxyl radicals; large area pulsed corona discharge; magnetic pulse compression stages; parallel-plate reactor; pollution control; pulse generator; pulse transformer; pulsed voltage; semiconductor switch; submerged pulse corona discharges; Corona; Electrodes; Inductors; Pollution control; Pulse compression methods; Pulse generation; Pulse transformers; Switches; Voltage; Water pollution; Pollution control, water pollution, corona, pulse generation.;
fLanguage :
English
Journal_Title :
Dielectrics and Electrical Insulation, IEEE Transactions on
Publisher :
ieee
ISSN :
1070-9878
Type :
jour
DOI :
10.1109/TDEI.2009.5211855
Filename :
5211855
Link To Document :
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