Experiments with fly ash obtained from a coal-burning power station in NSW, Australia, were conducted in the cold crucible facility at ANSTO using a 30kW variable frequency generator. The generator was configured as a standard Hartley oscillator with the tank capacitor able to vary from 110 pF to 4100 pF giving a frequency span of 5MHz to 18MHz. The applicator consisted of a coil with a water cooled base and top plate that formed an LC resonant cavity, which coupled to the RF generator by a single turn coil. A dark glass, confined inside the applicator, was formed by applying a high frequency electromagnetic field between two copper plates through a sample of fly ash. The temperatures reached were in excess of 1000 °C causing the powder to fuse into glass in a very brief period of a few minutes. The purpose of this experiment was to verify if dielectric and/or induction heating could melt the fly ash in a more rapid manner than conventional (resistive/joule) heating.

Processing fly ash from coal burning power station in a variable radiofrequency field / Barbieri, L., Lancellotti, I., Andreola, F., Cotradi, A., Leonelli, C., La Robina, M.. - 207:(2009), pp. 21-28. (2008 Materials Science and Technology Conference, MS and T'08 Pittsburgh, PA, USA 5-9 ottobre 2008) [10.1002/9780470538371.ch3].

Processing fly ash from coal burning power station in a variable radiofrequency field

Barbieri L.;Lancellotti I.;Andreola F.;Leonelli C.
;
2009

Abstract

Experiments with fly ash obtained from a coal-burning power station in NSW, Australia, were conducted in the cold crucible facility at ANSTO using a 30kW variable frequency generator. The generator was configured as a standard Hartley oscillator with the tank capacitor able to vary from 110 pF to 4100 pF giving a frequency span of 5MHz to 18MHz. The applicator consisted of a coil with a water cooled base and top plate that formed an LC resonant cavity, which coupled to the RF generator by a single turn coil. A dark glass, confined inside the applicator, was formed by applying a high frequency electromagnetic field between two copper plates through a sample of fly ash. The temperatures reached were in excess of 1000 °C causing the powder to fuse into glass in a very brief period of a few minutes. The purpose of this experiment was to verify if dielectric and/or induction heating could melt the fly ash in a more rapid manner than conventional (resistive/joule) heating.
2009
Inglese
2008 Materials Science and Technology Conference, MS and T'08
Pittsburgh, PA, USA
5-9 ottobre 2008
https://ceramics.onlinelibrary.wiley.com/doi/abs/10.1002/9780470538371.ch3
Environmental Issues and Waste Management Technologies in the Materials and Nuclear Industries, XII
Alex Cozzi Tatsuki Ohji
207
21
28
9780470408483
The American Ceramic Society
STATI UNITI D'AMERICA
735 CERAMIC PLACE, WESTERVILLE, OH 43081-8720 USA
Internazionale
Contributo
Il lavoro è frutto della collaborazione fra il Dipartimento di Ingegneria dei Materiali e dell’Ambiente e dell’Institute of Materials Engineering, ANSTO - Australian Nuclear Science and Technology Organization, Sydney, NSW, Australia, in occasione del soggiorno di studio a Modena del dr. Michael La Robina.
Barbieri, L.; Lancellotti, I.; Andreola, F.; Cotradi, A.; Leonelli, C.; La Robina, M.
Atti di CONVEGNO::Relazione in Atti di Convegno
273
6
Processing fly ash from coal burning power station in a variable radiofrequency field / Barbieri, L., Lancellotti, I., Andreola, F., Cotradi, A., Leonelli, C., La Robina, M.. - 207:(2009), pp. 21-28. (2008 Materials Science and Technology Conference, MS and T'08 Pittsburgh, PA, USA 5-9 ottobre 2008) [10.1002/9780470538371.ch3].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1208243
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