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The safety of agri-food supply chains remains under constant threat from risks such as food adulteration, malicious contamination, microbiological and chemical hazards, as well as the presence of foreign bodies in food products. Developing smart agri-food supply chains: Using technology to improve safety and quality provides an authoritative assessment of recent developments to improve safety and quality at key points in the agri-food supply chain. This collection provides a comprehensive coverage of the methods used in tracking and traceability (including detecting genetically-modified organisms in food products), ways of assessing product integrity, dealing with malicious contamination as well as quality assessment and ensuring transparency in supply chains. Edited by Professor Louise Manning, Royal Agricultural University, UK, Developing smart agri-food supply chains: Using technology to improve safety and quality will be a standard reference for those researching food safety, agri-food logistics and supply chains in universities or other research centres, as well as government and commercial agencies responsible for safety and quality monitoring of agri-food supply chains. It will also be a key reference for supply chain actors, from farmers to food processors and retailers.
Comprehensive Analytical Chemistry, Volume 84, the latest release in the Comprehensive Analytical Chemistry series, highlights new advances in the field, with this new volume presenting interesting chapters on the Current status of environmental monitoring, Physical principles of infrared, Chemical principles of infrared, Instrumentation and hardware, Data analysis, Sampling, Applications in water, Application in soil and sediments, Applications in ecology of animals and plants, Applications in air monitoring, Applications in contamination, Applications in marine environments, Advantages and pitfalls, and more.
Since Herschel discovered light in the near-infrared region as early as 1800, the NIR region of the electromagnetic spectrum, once regarded as having little potential for analytical work, has now become one of the most promising techniques for molecular spectroscopy in several analytical fields. Over the last three decades, the development of new applications of infrared spectroscopy has been associated with increased power of computers and progress in chemometrics. This book introduces and presents several novel applications of NIR spectroscopy in biology, medicine, food science, the pharmaceutical sciences, polymers and minerals, for the first time in a single book. It is written by an international panel of scientists with a vast expertise in the field of infrared spectroscopy, providing unique views and perspectives on both practical and theoretical applications. This book should serve as a reference source for undergraduate and postgraduate students, scientists and researchers in the field of infrared spectroscopy.
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