Characterization method of dielectric properties of free falling drops in a microwave processing cavity and its application in microwave internal gelation

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Abstract

Microwave internal gelation (MIG) is a chemical process proposed for the production of nuclear particle fuel. The internal gelation reaction is triggered by a temperature increase of aqueous droplets falling by gravity by means of non-contact microwave heating. Due to the short residence time of a solution droplet in a microwave heating cavity, a detailed knowledge of the interaction between microwaves and chemical solution (shaped in small drops) is required. This paper describes a procedure that enables the measurement of the dielectric properties of aqueous droplets that freely fall through a microwave cavity. These measurements provide the information to determine the optimal values of the parameters (such as frequency and power) that dictate the heating of such a material under microwaves. © 2013 IOP Publishing Ltd.

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Cabanes-Sempere, M., Catalá-Civera, J. M., Peñaranda-Foix, F. L., Cozzo, C., Vaucher, S., & Pouchon, M. A. (2013). Characterization method of dielectric properties of free falling drops in a microwave processing cavity and its application in microwave internal gelation. Measurement Science and Technology, 24(9). https://doi.org/10.1088/0957-0233/24/9/095009

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