Glass Transition Temperature and Spray Drying of Sugar-Rich Foods: Modelling and Stickiness

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Glass Transition Temperature and Spray Drying of Sugar-Rich Foods: Modelling and Stickiness. Bookseller Inventory #

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Synopsis: The phenomenon of glass transition is now recognised in the science of materials in different areas including foods. The glass transition temperature (Tg) of foods is extremely important in the prediction of conditions for proper food processing. In conventional methods for evaluation of stickiness in spray drying of sugar-rich foods, the direct relation between Tg and stickiness has not been established yet. This book describes the controlling of the stickiness and product recovery by controlling the temperature difference between product temperature and Tg during the spray drying process of foods. It consits of fundamental studies of Tg with new informations such as complete melting temperature, contribution of structural relaxation, solid-solid interaction, effect of the melting rate on thermal history and the prediction of multi-component food models which are useful for process modeling. A mathematical model to illustrate the dynamic stickiness behavior of sticky products in relation to inlet variables of the spray drying process is developed. It is used to find a set of inlet variables to minimize the stickiness in spray drying of sugar-rich foods.

About the Author: Assoc. Prof. Dr. Vinh Truong got PhD in Food Science at The University of Queensland, Australia in 2002. His research interests are broadly in Drying, Glass transition, Extraction, and Process Engineering. Since 2004, he is Head of Department of Chemical Engineering and Processing of Nong Lam University in Ho Chi Minh city, Vietnam.

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Book Description LAP Lambert Academic Publishing Jun 2014, 2014. Taschenbuch. Book Condition: Neu. Neuware - The phenomenon of glass transition is now recognised in the science of materials in different areas including foods. The glass transition temperature (Tg) of foods is extremely important in the prediction of conditions for proper food processing. In conventional methods for evaluation of stickiness in spray drying of sugar-rich foods, the direct relation between Tg and stickiness has not been established yet. This book describes the controlling of the stickiness and product recovery by controlling the temperature difference between product temperature and Tg during the spray drying process of foods. It consits of fundamental studies of Tg with new informations such as complete melting temperature, contribution of structural relaxation, solid-solid interaction, effect of the melting rate on thermal history and the prediction of multi-component food models which are useful for process modeling. A mathematical model to illustrate the dynamic stickiness behavior of sticky products in relation to inlet variables of the spray drying process is developed. It is used to find a set of inlet variables to minimize the stickiness in spray drying of sugar-rich foods. 440 pp. Englisch. Bookseller Inventory # 9783659545016

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Book Description LAP Lambert Academic Publishing Jun 2014, 2014. Taschenbuch. Book Condition: Neu. Neuware - The phenomenon of glass transition is now recognised in the science of materials in different areas including foods. The glass transition temperature (Tg) of foods is extremely important in the prediction of conditions for proper food processing. In conventional methods for evaluation of stickiness in spray drying of sugar-rich foods, the direct relation between Tg and stickiness has not been established yet. This book describes the controlling of the stickiness and product recovery by controlling the temperature difference between product temperature and Tg during the spray drying process of foods. It consits of fundamental studies of Tg with new informations such as complete melting temperature, contribution of structural relaxation, solid-solid interaction, effect of the melting rate on thermal history and the prediction of multi-component food models which are useful for process modeling. A mathematical model to illustrate the dynamic stickiness behavior of sticky products in relation to inlet variables of the spray drying process is developed. It is used to find a set of inlet variables to minimize the stickiness in spray drying of sugar-rich foods. 440 pp. Englisch. Bookseller Inventory # 9783659545016

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Book Description LAP Lambert Academic Publishing Jun 2014, 2014. Taschenbuch. Book Condition: Neu. This item is printed on demand - Print on Demand Neuware - The phenomenon of glass transition is now recognised in the science of materials in different areas including foods. The glass transition temperature (Tg) of foods is extremely important in the prediction of conditions for proper food processing. In conventional methods for evaluation of stickiness in spray drying of sugar-rich foods, the direct relation between Tg and stickiness has not been established yet. This book describes the controlling of the stickiness and product recovery by controlling the temperature difference between product temperature and Tg during the spray drying process of foods. It consits of fundamental studies of Tg with new informations such as complete melting temperature, contribution of structural relaxation, solid-solid interaction, effect of the melting rate on thermal history and the prediction of multi-component food models which are useful for process modeling. A mathematical model to illustrate the dynamic stickiness behavior of sticky products in relation to inlet variables of the spray drying process is developed. It is used to find a set of inlet variables to minimize the stickiness in spray drying of sugar-rich foods. 440 pp. Englisch. Bookseller Inventory # 9783659545016

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Book Description Book Condition: New. Publisher/Verlag: LAP Lambert Academic Publishing | Modelling and Stickiness | The phenomenon of glass transition is now recognised in the science of materials in different areas including foods. The glass transition temperature (Tg) of foods is extremely important in the prediction of conditions for proper food processing. In conventional methods for evaluation of stickiness in spray drying of sugar-rich foods, the direct relation between Tg and stickiness has not been established yet. This book describes the controlling of the stickiness and product recovery by controlling the temperature difference between product temperature and Tg during the spray drying process of foods. It consits of fundamental studies of Tg with new informations such as complete melting temperature, contribution of structural relaxation, solid-solid interaction, effect of the melting rate on thermal history and the prediction of multi-component food models which are useful for process modeling. A mathematical model to illustrate the dynamic stickiness behavior of sticky products in relation to inlet variables of the spray drying process is developed. It is used to find a set of inlet variables to minimize the stickiness in spray drying of sugar-rich foods. | Format: Paperback | Language/Sprache: english | 599 gr | 220x150x23 mm | 440 pp. Bookseller Inventory # K9783659545016

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