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The benefits of food irradiation to the public health have been described extensively by organizations such as the Centers for Disease Control and Prevention in the U.S. and the World Health Organization. The American Medical Association and the American Dietetic Association have both endorsed the irradiation process. Yet the potential health benefits of irradiation are unknown to many consumers and food industry representatives who are wary of irradiated foods due to myth-information from “consumer-advocate” groups. Food Irradiation Research and Technology presents the latest scientific findings of researchers at the leading edge of food irradiation. In this book, experts from industry, government, and academia: define the basic principles of irradiation and the public health benefits of irradiation describe advances in irradiation technology, detection technology, and radiation dosimetry review the regulations pertaining to food irradiation and the toxicological safety data provide food industry representatives and public health officials with effective methodologies to educate consumers and counteract misinformation review recent advances in the irradiation of meat and poultry, fruits and vegetables, seafood, and the use of irradiation as a phytosanitary treatment Food Irradiation Research and Technology appeals to a broad readership: industry food scientists involved in the processing of meat and fish, fruits and vegetables; food microbiologists and radiation processing specialists; government and industry representatives involved in the import and export of food commodities; and industry, local, and state officials involved in educational efforts regarding food irradiation. Food scientists and technologists share a responsibility to ensure that educational materials provided to the public regarding food safety and processing technologies are based on sound science and fact, not on misconceptions. Food Irradiation Research and Technology meets that goal.
The irradiation of food is a low cost, highly effective method of ensuring food safety, and extending shelf life. Public acceptance of irradiation, despite its benefits, however, has been a significant challenge. Irradiation of Food Commodities is the first holistic book that looks not only at the techniques, application and legislation of this method, but also addresses the concern of public opinion. Organized into logical themes and written by experts from industry, academia and research, this book will meet the needs of those working or considering the use of irradiation in their work. Sections focus on legislation, irradiation techniques and materials; detection and risk assessment; application of irradiation on food and consumer opinion. Insights into regulations from a variety of countries provides important information on government strategies Extensive coverage of applications, from animal food to food for human consumption, and disinfestation explores the various potential application opportunities available for consideration Addresses risk assessment -- key to governmental and more importantly consumer acceptance All topics in one volume for the first time provides complete vision of the technology
Bestrahlung von Lebensmitteln - dieser Band beschreibt Wirkungen, Anwendungsgebiete und Grenzen. International renommierte Fachleute konzentrieren sich in ihren Beiträgen auf wissenschaftliche und technologische Details, weniger auf die Streitfrage, ob Lebensmittel überhaupt bestrahlt werden sollten. Die Diskussion ist eingebettet in die Bestimmungen des Kontrollsystems HACCP, das in der fleisch- und fischverarbeitenden Industrie der USA und Europas mittlerweile Pflicht ist.
Food irradiation, the use of ionizing radiation to destroy harmful biological organism in food, is a safe, proven process that has many useful applications. It has been endorsed by numerous health organizations and has now been approved for many applications by governments around the world. Electronic Irradiation of Foods describes all the key aspects of electron accelerator technology in detail. It emphasizes the physical science and technology aspects of food irradiation using machine sources of ionizing radiation. The book provides significant technical depth for interested workers and present descriptive, introductory material that should help demystify technology for businessmen to make informed choices regarding important investments decisions. Introductory chapters summarize the effects of ionizing radiation on biological organisms and the organic compounds comprising foods, and give an overview of the food irradiation process. Subsequent chapters cover the details of the electron beam and x-ray energy deposition, electron accelerator technologies, beam scanning systems, material handling systems, shielding design, and process control considerations. Important appendices cover radiation dosimetry, induced radioactivity, and ozone generation.
Food preservation by irradiation is gaining recognition as a technology that is more environmentally benign than other current processes such as post-harvest chemical fumigation, it has less impact on thermally sensitive compounds than thermal decontamination technologies such as hot water or steam, and the technology is more accessible and cheaper. As the technical and economic feasibility, as well as the level of consumer acceptance, have increased its use has been growing fast. International organizations including the Food and Agriculture Organization of the United Nations (FAO), the International Atomic Energy Agency (IAEA) and the World Health Organization (WHO) have coordinated and worked with others to develop norms and review the safety and efficacy of irradiated foods. Commended in the Foreword by Carl Blackburn, Food Irradiation Specialist, Joint FAO / IAEA Division of Nuclear Techniques in Food and Agriculture, this book makes a strong case for the use of this overwhelmingly safe food processing technique. This comprehensive book is a useful reference for food technologists, analytical chemists and food processing professionals, covering all aspects of gamma, electron beam and X-ray food irradiation, its impact on food matrices and microorganisms, legislation and market aspects. It is the first book to cover control and structural analysis in food irradiation and, being written by leading experts in the field, addresses the current global best practices. It contains updated information about the commercial application of food irradiation technology, especially regarding the type of radiation based on food classes and covers dosimetry, radiation chemistry, food decontamination, food quarantine, food processing and food sterilization.
In 1997 the FDA approved the use of low-dose ionizing radiation to eliminate pathogens in red meat. This food processing technology can improve the safety of food and extend the shelf life of certain foods by eliminating pathogenic bacteria, parasites, and other microorganisms that cause food-borne disease. Currently, forty-two countries practice some form of food irradiation. Food Irradiation: Principles and Applications provides a comprehensive, up-to-date account of food irradiation principles, effects, applications, and limitations, including global regulatory issues and the economics of food irradiation. Written by an international panel of scientists, this book focuses on science and technology and offers thorough coverage of the current use of food irradiation around the world. The contributors in this book present irradiation as a truly critical control point for raw, solid foods of animal origin. Food Irradiation: Principles and Applications discusses such topics as: -Radiation inactivation of microorganisms -Disinfestation of stored grains, pulses, dried fruits, and nuts -Irradiation as a quarantine treatment -Irradiation of meat and poultry, fish and shellfish, fruits and vegetables, and tuber and bulb crops -Radiation decontamination of spices, herbs, condiments, and other dried food ingredients -Process control and dosimetry in food irradiation Food professionals in both academia and industry, as well as food safety experts, food scientists, research scientists, and food processing managers, will find Food Irradiation: Principles and Applications a reliable and valuable reference.
Food irradiation has been in the news lately, and this news strongly favors the consideration of food irradiation as a practical, economical method for improving food safety and shelf life. This new edition of a popular guidebook provides an updated, detailed, readable survey of the past, present and future of food irradiation. It covers a wide variety of topics ranging from the scientific basics to an examination of the many objections to food irradiation. Also included is a detailed discussion of the role of food irradiation in preventing a variety of foodborne diseases.
This work examines the exaggerations, misunderstandings and muddled terminology that often characterize the controversies regarding the safety of food irradiation. It sets out to untangle the conflicting claims asserted by the proponents and opponents of this modern method of food processing. Information is drawn from international scientific and political bodies. This edition: presents results from recent studies on the wholesomeness of irradiated foods; considers practical aspects of food irradiation, regulation, control and consumer acceptance; discusses developments in the identification of irradiated foods; and more.
Defines food irradiation and describes the irradiation process; outlines what foods are currently irradiated and where they are irradiated; and discusses the benefits of irradiation versus the risks. Discusses the effects of irradiation on food; safety and nutrition aspects of irradiated food; occupational and environmental risks; economic considerations; alternatives to food irradiation; the politics of food irradiation; and Canadian food irradiation legislation. Provides a review of the areas of concern and recommendations.
Genetically Modified and Irradiated Food: Controversial Issues: Facts versus Perceptions explains the technologies used in these processes so they can be understood by those in general public health, scientific organizations, politicians and opinion makers/policymakers. The facts presented include a massive amount of scientific evidence that these technologies are safe and can be beneficial. Because the world is facing a future with an increasing number of people, new technologies are needed to ensure enough safe and healthy food, thus technologies that have the potential to dramatically increase the availability of safe and healthy food should be welcomed by everybody. Includes references to science based research on GMOs Explains the technologies in a clear way that can be understood by the general public Includes a massive amount of scientific evidence that these technologies are safe and can be beneficial