Food Waste Recovery: Processing Technologies and Industrial Techniques
ISBN-13:
9780128003510
ISBN-10:
0128003510
Edition:
1
Author:
Charis M. Galanakis
Publication date:
2015
Publisher:
Academic Press
Format:
Hardcover
412 pages
Category:
Civil & Environmental
,
Food Science
,
Agricultural Sciences
,
Biological Sciences
,
Conservation
,
Nature & Ecology
,
Engineering
FREE US shipping
Book details
ISBN-13:
9780128003510
ISBN-10:
0128003510
Edition:
1
Author:
Charis M. Galanakis
Publication date:
2015
Publisher:
Academic Press
Format:
Hardcover
412 pages
Category:
Civil & Environmental
,
Food Science
,
Agricultural Sciences
,
Biological Sciences
,
Conservation
,
Nature & Ecology
,
Engineering
Summary
Food Waste Recovery: Processing Technologies and Industrial Techniques (ISBN-13: 9780128003510 and ISBN-10: 0128003510), written by authors
Charis M. Galanakis, was published by Academic Press in 2015.
With an overall rating of 3.9 stars, it's a notable title among other
Civil & Environmental
(Food Science, Agricultural Sciences, Biological Sciences, Conservation, Nature & Ecology, Engineering) books. You can easily purchase or rent Food Waste Recovery: Processing Technologies and Industrial Techniques (Hardcover) from BooksRun,
along with many other new and used
Civil & Environmental
books
and textbooks.
And, if you're looking to sell your copy, our current buyback offer is $0.3.
Description
Food Waste Recovery: Processing Technologies and Industrial Techniques acts as a guide to recover valuable components of food by-products and recycle them inside the food chain, in an economic and sustainable way. The book investigates all the relevant recovery issues and compares different techniques to help you advance your research and develop new applications. Strong coverage of the different technologies is included, while keeping a balance between the characteristics of current conventional and emerging technologies. This is an essential reference for research outcomes.
- Presents a holistic methodology (the so-called "5-Stages Universal Recovery Process") and a general approach (the so-called "Universal Recovery Strategy") to ensure optimized management of the available technologies and recapture of different high added-value compounds from any waste source
- Includes characteristics, safety and cost issues of conventional and emerging technologies, the benefits of their application in industry, and commercialized applications of real market products
- Demonstrates all aspects of the recovery process such as preservation of the substrate, yield optimization, preservation of functionality of the target compounds during processing, and more
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