Lyophilizing frozen pellets, and especially spray freeze-drying, have been receiving growing interest. To design efficient and safe freeze-drying cycles, local temperature and moisture content in the product bed have to be known, but both are difficult to measure in the industry. Mathematical modeling of heat and mass transfer helps to determine local freeze-drying conditions and predict effects of operation policy, and equipment and recipe changes on drying time and product quality. Representative pellets situated at different positions in the product slab were considered. One-dimensional transfer in the slab and radial transfer in the pellets were assumed. Coupled heat and vapor transfer equations between the temperature-controlled shelf, the product bulk, the sublimation front inside the pellets, and the chamber were established and solved numerically. The model was validated based on bulk temperature measurement performed at two different locations in the product slab and on partial vapor pressure measurement in the freeze-drying chamber. Fair agreement between measured and calculated values was found. In contrast, a previously developed model for compact product layer was found inadequate in describing freeze-drying of pellets. The developed model represents a good starting basis for studying freeze-drying of pellets. It has to be further improved and validated for a variety of product types and freeze-drying conditions (shelf temperature, total chamber pressure, pellet size, slab thickness, etc.). It could be used to develop freeze-drying cycles based on product quality criteria such as local moisture content and glass transition temperature.
Skip Nav Destination
e-mail: cristian.trelea@agroparistech.fr
Article navigation
July 2009
Technical Briefs
Model for Heat and Mass Transfer in Freeze-Drying of Pellets
Ioan Cristian Trelea,
Ioan Cristian Trelea
UMR 782 Génie et Microbiologie des Procédés Alimentaires,
e-mail: cristian.trelea@agroparistech.fr
AgroParisTech, INRA
, 1 Avenue Lucien Brétignières, 78850 Thiverval-Grignon, France
Search for other works by this author on:
Stéphanie Passot,
Stéphanie Passot
UMR 782 Génie et Microbiologie des Procédés Alimentaires,
AgroParisTech, INRA
, 1 Avenue Lucien Brétignières, 78850 Thiverval-Grignon, France
Search for other works by this author on:
Michèle Marin,
Michèle Marin
UMR 782 Génie et Microbiologie des Procédés Alimentaires,
AgroParisTech, INRA
, 1 Avenue Lucien Brétignières, 78850 Thiverval-Grignon, France
Search for other works by this author on:
Fernanda Fonseca
Fernanda Fonseca
UMR 782 Génie et Microbiologie des Procédés Alimentaires,
AgroParisTech, INRA
, 1 Avenue Lucien Brétignières, 78850 Thiverval-Grignon, France
Search for other works by this author on:
Ioan Cristian Trelea
UMR 782 Génie et Microbiologie des Procédés Alimentaires,
AgroParisTech, INRA
, 1 Avenue Lucien Brétignières, 78850 Thiverval-Grignon, Francee-mail: cristian.trelea@agroparistech.fr
Stéphanie Passot
UMR 782 Génie et Microbiologie des Procédés Alimentaires,
AgroParisTech, INRA
, 1 Avenue Lucien Brétignières, 78850 Thiverval-Grignon, France
Michèle Marin
UMR 782 Génie et Microbiologie des Procédés Alimentaires,
AgroParisTech, INRA
, 1 Avenue Lucien Brétignières, 78850 Thiverval-Grignon, France
Fernanda Fonseca
UMR 782 Génie et Microbiologie des Procédés Alimentaires,
AgroParisTech, INRA
, 1 Avenue Lucien Brétignières, 78850 Thiverval-Grignon, FranceJ Biomech Eng. Jul 2009, 131(7): 074501 (4 pages)
Published Online: June 4, 2009
Article history
Received:
October 7, 2008
Revised:
April 14, 2009
Published:
June 4, 2009
Citation
Trelea, I. C., Passot, S., Marin, M., and Fonseca, F. (June 4, 2009). "Model for Heat and Mass Transfer in Freeze-Drying of Pellets." ASME. J Biomech Eng. July 2009; 131(7): 074501. https://doi.org/10.1115/1.3142975
Download citation file:
Get Email Alerts
Related Articles
Explicit Analytical Solutions of Linear and Nonlinear Interior Heat and Mass Transfer Equation Sets for Drying Process
J. Heat Transfer (February,2003)
Drying of Porous Materials in a Medium With Variable Potentials
J. Heat Transfer (August,1991)
Laminar Boundary Layer Development Around a Circular Cylinder: Fluid Flow and Heat-Mass Transfer Characteristics
J. Heat Transfer (December,2010)
Thermal Conversion of Solid Fuels. Developments in Heat Transfer, Vol 15
Appl. Mech. Rev (September,2003)
Related Chapters
Numerical Study on Coupled Heat and Mass Transfer in Potato during Hot-Air Drying
Inaugural US-EU-China Thermophysics Conference-Renewable Energy 2009 (UECTC 2009 Proceedings)
Experimental Assessment of Hygrothermal Properties of Wood-Frame Wall Assemblies—Moisture Content Calibration Curve for OSB Using Moisture Pins
Heat-Air-Moisture Transport, 2nd Volume: Measurements and Implications in Buildings
Drying Response of Wood-Frame Construction: Laboratory and Modeling
Heat-Air-Moisture Transport, 2nd Volume: Measurements and Implications in Buildings