Description: Electrotechnologies for Extraction from Food Plants and Biomaterials Please note: this item is printed on demand and will take extra time before it can be dispatched to you (up to 20 working days). Author(s): Eugene Vorobiev, Nikolai Lebovka Format: Paperback Publisher: Springer-Verlag New York Inc., United States Imprint: Springer-Verlag New York Inc. ISBN-13: 9781441927194, 978-1441927194 Synopsis Recently, the electrotechnologies based on the effects of pulsed electric fields (PEF), such as ohmic heating (OH) and DC electric field, have gained real interest in the field of food processing. These techniques efficiently enhance methods of extraction from food plants and dehydration of biosolids. The PEF and pulsed OH techniques preserve the nutritional, functional, structural and sensory properties of products better than conventional extraction technologies. The electrofiltration and electro-osmotic dewatering can be very effective for the separation of bioproducts and dehydration of food wastes. The first source book in the field, this book gives an overview the fundamental principles of electrical techniques, electrophysical properties of foods and agricultural products, application of various emerging electrotechnologies for enhancing the solid-liquid separation and drying processes, extraction techniques of pigments, processing methods of different in-plant tissues and biosolids, electro-osmotic dewatering and electrofiltration of biomaterials, recent industrial- scale gains, and other aspects. Each chapter is complementary to other chapters and addresses the latest efforts in the field.
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Book Title: Electrotechnologies for Extraction from Food Plants and Biomat...
Item Height: 235mm
Item Width: 155mm
Author: Eugene Vorobiev, Nikolai Lebovka
Publication Name: Electrotechnologies for Extraction from Food Plants and Biomaterials
Format: Paperback
Language: English
Publisher: Springer-Verlag NY Inc.
Subject: Engineering & Technology, Chemistry
Publication Year: 2010
Type: Textbook
Item Weight: 456g
Number of Pages: 281 Pages