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Advances in Cheese Whey Utilization

Author : Maria Esperanza Cerdán
Publisher :
Page : 209 pages
File Size : 26,6 MB
Release : 2008-01-01
Category : Whey
ISBN : 9788178953595

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Whey, a by-product of cheese and curd manufacturing, was once considered as a waste product and indeed, even nowadays, its uncontroled delivery to water effluents constitutes a great environmental problem to solve. However, along the chapters of this review book we can follow the change in perception of whey from waste to co-product thanks to the many clever usages of this resource that have been developed in recent years. In the first chapter the discovery and importance of whey or manufactured derivatives as functional foods or alimentary additives is revised thoroughly in relation to the particular functions of its biological components and their effects on diverse disease treatments. Other application of great relevance is considered in chapter two, the production of biofuels, specifically biogas, from cheese whey. The reader will find a summary of how knowledge in the field of biogas production from cheese whey effluents has evolved, the current status quo, and identify areas that should be addressed in the near future. Biosurfactants have many potential applications including enhanced oil recovery, crude oil drilling lubricants, surfactant-aided bioremediation of water-insoluble pollutants, and in the health care and food processing industries. Other developing areas of biosurfactant use are in cosmetic and soap formulations, foods, and dermal as well as transdermal drug delivery systems. The limit to biosurfactant production is usually high cost associated to their production and extraction. Therefore the use of cheese whey as a cheaper substrate opens new areas of research and innovation in this industry as reported in chapter three of this book. Microbial biosynthesis allows the production of optically pure lactic acid, which is highly demanded for several industrial applications. Production of lactic acid by fermentation of lactic acid bacteria on whey has been investigated as a feasible route for processing and upgrading of this effluent. Chapter four summarises the most recent attempts on the utilization of cheese whey as culture medium for microbial biosynthesis of lactic acid, both using free and immobilized microorganisms. Several bacteria are able to produce polyesters as reserve materials of carbon and energy. These polyesters are quite diverse and represent a family of polymers named polyhydroxyalkanotes (PHA). Since mechanical and physical properties of polymers are strongly dependent of monomer composition, it is believed that PHA will constitute tailor made polymers for different applications and therefore have attracted great academic and industrial interest as natural biodegradable thermoplastic and elastomeric materials which could be synthesized from renewable materials. To be competitive with common plastics, the production costs of PHA have to be reduced and in chapter five the use of cheese whey as a cheap carbon source is considered. Single cell protein (SCP) production has been the subject of extensive research mainly for the production of animal feeds enriched in protein by microbial treatment of various agro-industrial wastes in submerged and solid-state fermentation processes. Some physicochemical properties of cheese whey, including high salinity, do not allow easy microbial utilisation. The review on chapter six summarizes recent research attempts trying to deal with the problem and focusing on the development of new technologies and selection or development of microorganisms suitable for maximal yield. Bacteriocins are innocuous peptides, sensitive to digestive proteases and they do not produce changes in the organoleptic properties of the foods. For all these reasons, they have proved to be effective food bio-preservatives. Chapter seven gives several examples of bacteriocins produced in whey-based media and particularly it focuses on Nisin and Pediocin production. The last chapter is devoted to the production of heterologous proteins from whey, a poorly explored field that could greatly improve the cost-effectiveness of whey recycling. Growth of engineered microorganisms in whey is a potential source to produce valuable homologous and heterologous proteins. Scientists are reconsidering the value of various components of milk, including whey, and how they may impact economics aspects of different industrial productions. Considerable positive research regarding whey and its biological components continue to be published and attracting the interest of dairy organizations and public administrations. We expect that this book will contribute to increase the knowledge about this subject and justify the convenience of founding research in this field.

Whey and Whey Utilization

Author : Tadeusz Sienkiewicz
Publisher :
Page : 392 pages
File Size : 20,76 MB
Release : 1990
Category : Feeds
ISBN :

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Discusses the problem of whey utilization in the field of dairy technology, particularly in production plants which manufacture cheese and fresh cheese products, acid whey, quarg and casein, and coprecipitates. Covers such topics as general problems of whey utilization, whey types and their composition, utilization of whey, investigation of whey and whey products, and other possibilities for the utilization of whey and the outlook. Aimed at technical college and university graduates in the field of food technology, practitioners operating in the field of dairying and in correspondending areas of food technology, as well as at the staff and students of scientific institutions.

Chemistry of Structure-Function Relationships in Cheese

Author : Edyth L. Malin
Publisher : Springer Science & Business Media
Page : 398 pages
File Size : 35,87 MB
Release : 2013-11-11
Category : Science
ISBN : 1461519136

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Although the art of making cheese can be traced to prehistoric times, it has continued to evolve as modern civilization progressed. The advent of new technologies and instrumentation has brought exponential growth in the understanding of cheese components and their function. Even more recently, the evolution of cheesemaking has accelerated, driven by economic factors such as the establishment of the European Economic Community, the changing diet of developed countries, and the environmental and economic concerns associated with whey disposal. Molecular biology has revolutionized the development of starter and adjunct cultures as well as rennets, and genetics will make it possible to maintain ideal milk components for cheesemaking. The ability to accelerate traditional ripening procedures has altered the production of certain cheeses, and the emphasis on decreasing the intake of dietary fat, especially in the United States, has prompted the development of technology for producing low-fat cheeses with traditional texture and flavor. In assembling a distinguished group of participants for the symposium, "Chemistry of the Structure/Function Relationships in Cheese," we hoped to review the interplay of these trends and forecast the direction of future research. Contributors evaluated the current status of cheesemaking and highlighted the information that will be essential for new developments. They also focused the attention of agricultural and food chemists on the opportunities in cheese research and the potential contributions they might make to the future of cheese, a most valuable food product. We are indebted to Dr. Patrick Fox, Dr. Mark Johnson, Dr. Milos Kalab, Dr.

Whey Processing, Functionality and Health Benefits

Author : Charles Onwulata
Publisher : John Wiley & Sons
Page : 417 pages
File Size : 29,81 MB
Release : 2009-03-03
Category : Technology & Engineering
ISBN : 081380387X

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Whey Processing, Functionality and Health Benefits provides a review of the current state of the science related to novel processes, functionality, and health benefit implications and documents the biological role of whey protein in selected areas that include muscle metabolism after exercise, muscle and body composition in the elderly, weight management, food intake regulation, and maintenance of bone mass. The topics addressed and the subject experts represent the best science knowledge base in these areas. In some of these areas, the state of the art and science are compelling, and emerging data are confirming and solidifying the human knowledge base. Collating the understanding and knowledge of the metabolic roles of whey protein and developing the clinical datasets that demonstrate efficacy for improving human health will speed up new product innovations and sustainable opportunities for the food industry as evidenced by the processing and functionality research conducted so far. Topics covered in this volume include: Whey utilization history and progress in process technology Fractionation and separation with health implications Whey emulsions and stability in acidic environments Current applications in films, coatings, and gels Texturized whey in snacks, meat analogs and candies Nanoparticles in hydrogels for delivery of bioactive components Whey protein role in human health Health and wellness, processing and functionality are clearly areas of continuing research and offer growth opportunity for the food industry. The benefits from such concentrated body of knowledge will be new ingredients and innovative products that improve overall wellbeing. Whey Processing, Functionality and Health Benefits provides food scientists and manufacturers insight into the health implications of whey protein science. Ultimately, the consumer will benefit from better formulated, healthier products.

Whey Valorization

Author : Amrita Poonia
Publisher : Springer Nature
Page : 377 pages
File Size : 22,68 MB
Release : 2023-11-28
Category : Technology & Engineering
ISBN : 9819954592

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This book focuses on the exploitation of whey through the extensive analysis of its molecular composition. Whey can provide various valuable compounds such as lactose, proteins and peptides. The book covers the biotechnological treatments of whey using biochemical and enzymatic treatment and microbial transformation, various high value products such as bioethanol, glycerol, Bioplastics (PLA), bacteriocins, exopolysaccharides, bacterial polysaccharides (PHA, PHB, Xanthan), single cell proteins, probiotics, bioactive peptides, organic acids (lactic, butyric, acetic acid), enzymes and biogas using microbial conversion of whey. The book also covers the use of whey for the preparation of different food products such as whey powder, condensed whey, spreads and various whey-based beverages including fermented beverages. Recent trends, opportunities and challenges in functional carbonated whey-based beverages are also discussed. Unlike the existing literature describing whey utilization, this book focuses on valorization, technological advancement and sustainable biotransformation of whey. The book also deals with membrane processing, sustainable approaches, biotechnological potential, green technologies and production of bioplastics. In addition, the book provides theoretical and practical information to present the various aspects of valorization of whey as a by-product. This book is a need of the hour for its eco-friendly approach. Whey Valorization: Innovations, Technological Advancements and Sustainable Exploitation will be a great resource for researchers, dairy technologists, food technologists, students and professionals working on sustainable and effective utilization of food as well as dairy wastes and by-products.

Byproducts from Agriculture and Fisheries

Author : Benjamin K. Simpson
Publisher : John Wiley & Sons
Page : 738 pages
File Size : 36,81 MB
Release : 2019-11-04
Category : Technology & Engineering
ISBN : 1119383978

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Ranging from biofuels to building materials, and from cosmetics to pharmaceuticals, the list of products that may be manufactured using discards from farming and fishery operations is extensive. Byproducts from Agriculture and Fisheries examines the procedures and technologies involved in this process of reconstitution, taking an environmentally aware approach as it explores the developing role of value-added byproducts in the spheres of food security, waste management, and climate control. An international group of authors contributes engaging and insightful chapters on a wide selection of animal and plant byproducts, discussing the practical business of byproduct recovery within the vital contexts of shifting socio-economic concerns and the emergence of green chemistry. This important text: Covers recent developments, current research, and emerging technologies in the fields of byproduct recovery and utilization Explores potential opportunities for future research and the prospective socioeconomic benefits of green waste management Includes detailed descriptions of procedures for the transformation of the wastes into of value-added food and non-food products With its combination of practical instruction and broader commentary, Byproducts from Agriculture and Fisheries offers essential insight and expertise to all students and professionals working in agriculture, environmental science, food science, and any other field concerned with sustainable resources.

Whey and Lactose Processing

Author : J. G. Zadow
Publisher : Springer Science & Business Media
Page : 497 pages
File Size : 28,68 MB
Release : 2012-12-06
Category : Science
ISBN : 9401128944

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It would be difficult to imagine a more appropriate means of marking the Jubilee of the Dairy Research Laboratory, Division of Food Processing, CSIRO, than a publication on whey and lactose processing. The genesis of the Laboratory in 1939 was when the Australian dairy industry was very largely based on the supply of cream from farms to numerous butter factories, the skim milk being fed to pigs. By the mid-1940s, when Geof frey Loftus-Hills was appointed in charge ofthe fledgling Dairy Research Section, the main objective of the Section-the full utilization of the con stituents of milk for human food-had been firmly established. Over the next two decades progress towards this objective was exemplified by the scientific and technological contributions made in specialized milk powders for use in recombining and in the manufacture of casein and cheese. Meanwhile farming practices changed from cream production to the supply of refrigerated whole milk to the factories. By the late 1960s the increasing production of cheese and casein had re sulted in almost 2 million tonnes of whey per annum. This represented not only a waste disposal problem, but also under-utilization of over 100000 t of milk solids. The Laboratory had now grown to a staff of around 70, so it was possible to allocate some resources to this extra challenge.

Cultured Food Life

Author : Donna Schwenk
Publisher : Xlibris Corporation
Page : 66 pages
File Size : 47,12 MB
Release : 2011
Category : Cooking
ISBN : 1452535221

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Dramatically improve your health by eating foods filled with dynamic probiotics that supercharge your body! Ordinary foods become powerful health agents in a few easy steps using ancient wisdom and time-tested techniques such as natural fermentation. Author and educator Donna Schwenk tells her compelling story of how she transformed her family's health by creating foods that conquer sicknesses, including diabetes, high blood pressure and IBS. Hundreds of families have attended Donna's seminars and renewed their health, changing their lives forever! After numerous requests from her seminar participants, Donna has provided this compilation of over sixty delicious recipes that were the key to her own success. With her simple step-by-step instructions, you too can learn to make delicious probiotic foods that will create wellness and restore your health. You can enjoy a preview at: www.culturedfoodlife.com or follow Donna on her blog at www.blog.culturedfoodlife.com

Cheesemaking Practice

Author : R. Andrew Wilbey
Publisher : Springer Science & Business Media
Page : 463 pages
File Size : 41,45 MB
Release : 2012-12-06
Category : Technology & Engineering
ISBN : 1461558190

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When the late Reg Scott wrote the first edition of this book in 1981, his intention was 'to produce a script generally interesting to those readers requiring more information on cheese'. It was not conceived as a book that covered the most recent developments with respect to lipid or protein chemistry, for example, but rather it was hoped that the text would reveal cheesemaking as a fascinating, and yet technically demanding, branch of dairy science. The fact that the author had some 50 years' experience of cheesemaking gave the book a very special character, in that the 'art' of the traditional cheesemaker emerged as a system that, in reality, had a strong scientific basis. Today, cheesemaking remains a blend of'art and science' for, while much cheese is made in computer-controlled factories relying on strict standard ization to handle the large volumes of milk involved, the production oftop quality cheese still relies on the innate skill of the cheesemaker. It was considered appropriate, therefore, that this revised edition ofCheesemaking Practice should include, at one end of the spectrum, details of the latest technology for curd handling and, at the other, simple recipes for the production of farmhouse cheeses. Obviously a student of dairy science will need to consult other texts in order to complete his/her knowledge of the cheesemaking process, but if this revised edition stimulates its readers to delve more deeply, then the task of updating the original manuscript will have been worthwhile.