DocumentCode :
1298016
Title :
A Coaxial Microwave Applicator for Direct Heating of Liquids Filling Chemical Reactors
Author :
Gentili, Guido Biffi ; Linari, Mariano ; Longo, Iginio ; Ricci, Andrea Simone
Author_Institution :
Dept. of Electron. & Telecommun., Univ. of Florence, Florence, Italy
Volume :
57
Issue :
9
fYear :
2009
Firstpage :
2268
Lastpage :
2275
Abstract :
A coaxial microwave applicator radiating in a liquid medium contained inside a chemical reactor is described. The applicator consists of an insulated asymmetrical dipole antenna that radiates almost isotropically. Hence, it appears well suited to directly heat the medium that fills the vessel, making it unnecessary to use a microwave oven as currently done in microwave assisted chemistry. The electromagnetic (EM) properties of the insulated dipole antenna emitting in high permittivity lossy media are first reviewed to define the applicator design criteria. A 3-D numerical EM solver is then employed to analyze the radiation of the applicator in the surrounding medium taking into account the whole structure of the reactor. Safe operations are always assured by the proper design of the applicator-vessel mechanical connection that drastically reduces unwanted stray radiation. The agreement between the theoretical analysis and the experiments performed is good, thus confirming that the coaxial applicator compares favorably with the traditional methods of activation, which use a single or multimode resonant EM cavity.
Keywords :
absorbing media; chemical reactors; dipole antennas; microwave antennas; microwave heating; 3-D numerical EM solver; applicator-vessel mechanical connection; chemical reactor; coaxial microwave applicator; direct heating; electromagnetic properties; insulated asymmetrical dipole antenna; liquid medium; lossy media; microwave assisted chemistry; multimode resonant EM cavity; permittivity; unwanted stray radiation; Chemical reactions; coaxial applicator; insulated antenna; lossy media; microwave heating;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2009.2027170
Filename :
5204096
Link To Document :
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