Patent classifications
F26B17/005
Apparatus and method for continuous lyophilization
A method and apparatus for the continuous sublimation of a substance includes cascading a material containing a substance capable of sublimation, such as water, between a plurality of trays vertically stacked within a processing zone provided within a processing chamber. A substantially atmospheric environment is maintained within the processing zone at a temperature whereby the substance sublimes forming a sublimate within the environment. The environment containing the sublimate is contacted with a drying agent such as a desiccant to maintain the environment whereby the substance sublimes at substantially atmospheric pressure and at the controlled temperature.
Apparatus And Method For Continuous Lyophilization
A method and apparatus for the continuous sublimation of a substance includes cascading a material containing a substance capable of sublimation, such as water, between a plurality of trays vertically stacked within a processing zone provided within a processing chamber. A substantially atmospheric environment is maintained within the processing zone at a temperature whereby the substance sublimes forming a sublimate within the environment. The environment containing the sublimate is contacted with a drying agent such as a desiccant to maintain the environment whereby the substance sublimes at substantially atmospheric pressure and at the controlled temperature.
Apparatus and method for continuous lyophilization
A method and apparatus for the continuous sublimation of a substance includes cascading a material containing a substance capable of sublimation, such as water, between a plurality of trays vertically stacked within a processing zone provided within a processing chamber. A substantially atmospheric environment is maintained within the processing zone at a temperature whereby the substance sublimes forming a sublimate within the environment. The environment containing the sublimate is contacted with a drying agent such as a desiccant to maintain the environment whereby the substance sublimes at substantially atmospheric pressure and at the controlled temperature.
APPARATUS AND METHOD FOR CONTINUOUS LYOPHILIZATION
A method and apparatus for the continuous sublimation of a substance includes cascading a material containing a substance capable of sublimation, such as water, between a plurality of trays vertically stacked within a processing zone provided within a processing chamber. A substantially atmospheric environment is maintained within the processing zone at a temperature whereby the substance sublimes forming a sublimate within the environment. The environment containing the sublimate is contacted with a drying agent such as a desiccant to maintain the environment whereby the substance sublimes at substantially atmospheric pressure and at the controlled temperature.
Apparatus and method for continuous lyophilization
A method and apparatus for the continuous sublimation of a substance includes cascading a material containing a substance capable of sublimation, such as water, between a plurality of trays vertically stacked within a processing zone provided within a processing chamber. A substantially atmospheric environment is maintained within the processing zone at a temperature whereby the substance sublimes forming a sublimate within the environment. The environment containing the sublimate is contacted with a drying agent such as a desiccant to maintain the environment whereby the substance sublimes at substantially atmospheric pressure and at the controlled temperature.
PARTICLE-DRYING APPARATUS WITH RECYCLING OF A PORTION OF THE HOT GAS
A dryer (1) for drying particles is provided that includes an enclosure, a circular tray mounted in the enclosure, the surface of which is perforated and permeable to gases, a distribution system and a recovery system for particles. The dryer also includes a hot-gas blowing system with N fans designed to generate a flow of hot gas along N gas columns, each gas column i passing through a different angular section (1.i) of the tray. Having passed through the (N1) first angular sections of the tray, the (N1) first gas columns are extracted from the enclosure or recirculated after drying and heating. Having passed through the Nth angular section (1.N) of the tray, the hot gas of the Nth gas column is recirculated by the Nth fan (5N) to form the first gas column (1.1) passing through the first angular sector (1.1) of the tray.