Title :
Plasma-Assisted Combustion System for Incineration of Oil Slimes
Author :
Korolev, Y.D. ; Frants, O.B. ; Landl, N.V. ; Geyman, V.G. ; Karengin, Alexander G. ; Pobereznikov, Andrey D. ; Yongho Kim ; Rosocha, L.A. ; Matveev, Igor B.
Author_Institution :
Inst. of High Current Electron., Tomsk, Russia
Abstract :
This paper deals with the experiments on methane oxidation in a torch flame that is sustained in a combustion chamber by a low-current nonsteady-state plasmatron. The regimes of operation for such a system in a wide range of air-methane mixtures are analyzed. With the results of experiments, a torch flame generator with a heat power density per unit area at the exit of combustion chamber of about 1 kW/cm2 is developed. The generator represents an independent unit that can be used in different applications. As an example of application, a usage of the generator in an installation for incineration of oil slimes is described. The flame with a total heat power at a level of 10 kW is directed to a furnace where it assists the burning process of an atomized water-slime composition. Typical content of water in the composition is from 40% to 50% and total expenditure of the composition in continuous mode of operation is from 400 to 600 L/h. The productivity of the installation with respect to slime incineration amounts to 0.25 m3/h.
Keywords :
air; flames; incineration; organic compounds; plasma chemistry; plasma diodes; plasma torches; air-methane mixtures; atomized water-slime composition; burning process; combustion chamber; continuous operation mode; furnace; heat power density; low-current nonsteady-state plasmatron; methane oxidation; oil slime incineration; plasma-assisted combustion system; power 10 kW; torch flame generator; Combustion; Discharges (electric); Fuels; Generators; Heating; Plasmas; Hydrocarbon oxidation; oil slime; plasma torches; plasma-assisted combustion;
Journal_Title :
Plasma Science, IEEE Transactions on
DOI :
10.1109/TPS.2013.2281058