High Pressure Fluid Technology for Green Food Processing

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· Springer
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The aim of this book is to present the fundamentals of high pressure technologies from the perspective of mass transfer phenomena and thermodynamic considerations. Novel food applications are exposed and their relation to chemical analysis, extraction, reaction and particle formation processes are outlined. The chapters are written by a diverse group of scientists with expertise in chemistry, food processes, analytical chemistry, chemical engineering and chemical engineering thermodynamics, and biotechnology.

The mission of green food engineering is to promote innovative technologies that reduce or eliminate the use or generation of hazardous materials (solvents, reagents) in the design and operation of food related processes, with the view to improve food safety and quality. Several efficient, environmentally friendly and benign technologies based on the use of high pressure and green solvents have demonstrated to be sustainable alternatives to traditional processes in the food industry.

Although hundreds of new ideas are being published in the open literature, reliable engineering tools to simulate and design those processes are still under development. High Pressure Fluid Technology for Green Food Processing presents in-depth analyses and outlines the ways towards their maturity.

Tiziana Fornari, Research Institute of Food Science (CIAL) Universidad Autonoma de Madrid, Madrid, Spain

Roumiana P. Stateva, Institute of Chemical Engineering, Bulgarian Academy of Sciences, Sofia, Bulgaria

Par autoru

Tiziana Fornari is a full professor of Food Science and Technology at UAM University (Universidad Autónoma de Madrid) in Madrid. She received her PhD degree in chemical engineering from the UNS University (Universidad Nacional del Sur) in Argentine. Her research interests include high pressure technologies applied to the production of functional food ingredients, the isolation of bioactive substances, the fundamentals of separation processes, thermodynamic phase equilibria modeling, process design, simulation and optimization.

Roumiana P. Stateva is a full professor at the Institute of Chemical Engineering, Bulgarian Academy of Sciences, Sofia. She received her PhD degree in chemical engineering from the Mendeleev University of Chemical Technology, Moscow, Russia. Her research is devoted to the modelling and efficient calculation of phase equilibria of complex systems, and to the development of original methods for the prediction of properties from the chemical structure of pure substances.

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