Natural gums are polysaccharides consisting of multiple sugar units linked together via glycosidic linkages. Most natural gums reveal appropriate safety for oral consumption in the form of food additives or drug carriers. Challenges related to the utilization of natural polysaccharides, however, include uncontrolled rates of hydration, pH dependent solubility, viscosity reduction during storage, and weak interfacial properties. Modification provides an efficient route for not only removing such drawbacks but also improving physicochemical properties, such as solubility, viscosity and swelling index, and introducing new properties for varied applications.This book provides a comprehensive review of the various modifications on gums to make them suitable for food, cosmetic and pharmaceutical industries. The book is divided in four parts: an introduction to natural gums followed by in-depth coverage of chemical modification, physical modification, and enzymatic modification of gums. Eachchapter includes reaction mechanisms, physicochemical properties, rheological properties, interfacial properties, applications and future perspectives.
Presenting a succinct account on gum modification from a practical point of view, this book is a helpful reference for academic and industrial scientists and engineers in food technology, materials chemistry, pharmaceuticals, chemical, industrial, and applied engineering, biochemistry, and biopolymers."synopsis" may belong to another edition of this title.
Hadi Hashemi Gahruie, Ph. D graduated in food science and technology, is specializes in the areas of food hydrocolloids, film and coating, emulsion, encapsulation, and particularly in the field of modification of hydrocolloids for different purposes in food industry. Hadi received his B.A. in food Science (2012) from Isfahan University of Technology (Isfahan, Iran), and M.Sc. degree (2015) and Ph.D. degree (2019) in food technology from Shiraz University (Shiraz, Iran). Currently he is a research assistant at Shiraz University. His research focuses on the modification of physicochemical, rheological and interfacial properties of hydrocolloids through chemical (i.e., esterification and Maillard) and physical (cold plasma, ultrasound, and high pressure) approaches to introduce novel functionalities in food and pharmaceutical industries. He has (co) authored more than 30 scientific research and review articles in journal papers, book chapters, conference, workshop papers, and books. He is a reviewer of national and international journals in his field of study. His research has been funded by grants from Shiraz University, Iran's National Elites Foundation, and Iran Nanotechnology Innovation Council.
Mohammad Hadi Eskandari obtained his PhD in food hygiene from Shiraz University on 2008. He is currently professor of food science and technology at Shiraz University. He was invited researcher at Lund University, University of Groningen and RWTH Aachen University. His research interests including development of functional and healthier food products and food biotechnology. He promoted more than 10 PhD students and more than 70 master students in the field of food science and biotechnology.
Dr. Amin Mousavi Khaneghah is a senior researcher at Department of Food Science and Nutrition , Faculty of Food Engineering, University of Campinas, Brazil. He is author or co-author of dozen papers (Scopusindexed) published in international peer-reviewed journals in the field of food science including mycotoxins, food contamination, potentially toxic elements (PTEs), pesticide, food safety and Food Process Engineering. He also belongs to the Editorial Boards of a number of reputed international journals besides the guest editor as well as active reviewer several ISI indexed journals.
Dr. Fatemeh Ghiasi received her Ph.D. in 2020 in Food Science and Technology from Shiraz University, Iran after completing her B.Sc. (2007-2011) and M.Sc. (2011-2013). She worked at the Complutense University of Madrid as a visiting researcher (2018-2019) in the area of Colloidal Delivery Systems. Fatemeh was then worked as a motivated research assistant (2020-2021) at the Department of Food Science and Technology in Shiraz University, working on industrial research projects and part-time lecturing. She is currently a postdoctoral researcher at Shiraz University. Herresearch focuses on the area of fat structure and food colloidal systems (hydrogels, oleogels, bigels, emulgels, emulsion, liposome), particularly nanotechnology for the delivery of health‐promoting bioactive compounds to advance their exciting future opportunities in food and pharmaceuticals fields. Her research activities have resulted in several publications (peer-review journals and book chapters) and conference papers in national and international meetings. She is the recipient of several financial grants, awards, and honors including the Top Alumni Awards from Iran's National Elites Foundation (INEF) and awards from the Iran Nanotechnology Initiative Council (INIC).
Natural gums are polysaccharides consisting of multiple sugar units linked together via glycosidic linkages. Most natural gums reveal appropriate safety for oral consumption in the form of food additives or drug carriers. Challenges related to the utilization of natural polysaccharides, however, include uncontrolled rates of hydration, pH dependent solubility, viscosity reduction during storage, and weak interfacial properties. Modification provides an efficient route for not only removing such drawbacks but also improving physicochemical properties, such as solubility, viscosity and swelling index, and introducing new properties for varied applications.This book provides a comprehensive review of the various modifications on gums to make them suitable for food, cosmetic and pharmaceutical industries. The book is divided in four parts: an introduction to natural gums followed by in-depth coverage of chemical modification, physical modification, and enzymatic modification of gums. Eachchapter includes reaction mechanisms, physicochemical properties, rheological properties, interfacial properties, applications and future perspectives.
Presenting a succinct account on gum modification from a practical point of view, this book is a helpful reference for academic and industrial scientists and engineers in food technology, materials chemistry, pharmaceuticals, chemical, industrial, and applied engineering, biochemistry, and biopolymers."About this title" may belong to another edition of this title.
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Taschenbuch. Condition: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Natural gums are polysaccharides consisting of multiple sugar units linked together via glycosidic linkages. Most natural gums reveal appropriate safety for oral consumption in the form of food additives or drug carriers. Challenges related to the utilization of natural polysaccharides, however, include uncontrolled rates of hydration, pH dependent solubility, viscosity reduction during storage, and weak interfacial properties. Modification provides an efficient route for not only removing such drawbacks but also improving physicochemical properties, such as solubility, viscosity and swelling index, and introducing new properties for varied applications.This book provides a comprehensive review of the various modifications on gums to make them suitable for food, cosmetic and pharmaceutical industries. The book is divided in four parts: an introduction to natural gums followed by in-depth coverage of chemical modification, physical modification, and enzymatic modification of gums. Each chapter includes reaction mechanisms, physicochemical properties, rheological properties, interfacial properties, applications and future perspectives.Presenting a succinct account on gum modification from a practical point of view, this book is a helpful reference for academic and industrial scientists and engineers in food technology, materials chemistry, pharmaceuticals, chemical, industrial, and applied engineering, biochemistry, and biopolymers. 276 pp. Englisch. Seller Inventory # 9783030879983
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Taschenbuch. Condition: Neu. Physicochemical and Enzymatic Modification of Gums | Synthesis, Characterization and Application | Hadi Hashemi Gahruie (u. a.) | Taschenbuch | x | Englisch | 2023 | Springer | EAN 9783030879983 | Verantwortliche Person für die EU: Springer Verlag GmbH, Tiergartenstr. 17, 69121 Heidelberg, juergen[dot]hartmann[at]springer[dot]com | Anbieter: preigu. Seller Inventory # 126466599
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Taschenbuch. Condition: Neu. This item is printed on demand - Print on Demand Titel. Neuware -Natural gums are polysaccharides consisting of multiple sugar units linked together via glycosidic linkages. Most natural gums reveal appropriate safety for oral consumption in the form of food additives or drug carriers. Challenges related to the utilization of natural polysaccharides, however, include uncontrolled rates of hydration, pH dependent solubility, viscosity reduction during storage, and weak interfacial properties. Modification provides an efficient route for not only removing such drawbacks but also improving physicochemical properties, such as solubility, viscosity and swelling index, and introducing new properties for varied applications.This book provides a comprehensive review of the various modifications on gums to make them suitable for food, cosmetic and pharmaceutical industries. The book is divided in four parts: an introduction to natural gums followed by in-depth coverage of chemical modification, physical modification, and enzymatic modification of gums. Eachchapter includes reaction mechanisms, physicochemical properties, rheological properties, interfacial properties, applications and future perspectives.Presenting a succinct account on gum modification from a practical point of view, this book is a helpful reference for academic and industrial scientists and engineers in food technology, materials chemistry, pharmaceuticals, chemical, industrial, and applied engineering, biochemistry, and biopolymers.Springer-Verlag KG, Sachsenplatz 4-6, 1201 Wien 276 pp. Englisch. Seller Inventory # 9783030879983
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