Abstract

Results are presented for an experimental investigation of the drying of capillary-porous high-moisture materials in a super-high-frequency electromagnetic field in an example of insulating mineralized plates. It is demonstrated that the process takes place at the highest possible rate of mass transfer at a given level of energy supply during the entire run of the drying process. High utilization efficiency of the internal energy supply is established for industrial implementation of the process. The active role played by vapor condensation during the drying of water on the metallic surfaces of waveguides supplying the energy of the electromagnetic field is ascertained.

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