Smart Food Industry: The Blockchain for Sustainable Engineering
Fundamentals, Technologies, and Management, Volume 1
Herausgeber: Lopes, Eduardo Jacob; Depra, Mariany Costa; Zepka, Leila Queiroz
Smart Food Industry: The Blockchain for Sustainable Engineering
Fundamentals, Technologies, and Management, Volume 1
Herausgeber: Lopes, Eduardo Jacob; Depra, Mariany Costa; Zepka, Leila Queiroz
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Smart Food Industry: The Blockchain for Sustainable Engineering, Volume I - Fundamentals, Technologies, and Management is a comprehensive overview of the current state of knowledge about food engineering and processing, under sustainable engineering perspective.
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Smart Food Industry: The Blockchain for Sustainable Engineering, Volume I - Fundamentals, Technologies, and Management is a comprehensive overview of the current state of knowledge about food engineering and processing, under sustainable engineering perspective.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Taylor & Francis Ltd
- Seitenzahl: 330
- Erscheinungstermin: 1. Dezember 2023
- Englisch
- Abmessung: 254mm x 178mm
- Gewicht: 884g
- ISBN-13: 9781032138404
- ISBN-10: 1032138408
- Artikelnr.: 68712820
- Verlag: Taylor & Francis Ltd
- Seitenzahl: 330
- Erscheinungstermin: 1. Dezember 2023
- Englisch
- Abmessung: 254mm x 178mm
- Gewicht: 884g
- ISBN-13: 9781032138404
- ISBN-10: 1032138408
- Artikelnr.: 68712820
Eduardo Jacob-Lopes is currently associate professor at the Department of Food Technology and Science, Federal University of Santa Maria, Brazil. He has more than 20 years of teaching and research experience. He is a technical and scientific consultant of several companies, agencies, and scientific journals. He has more than 700 publications/communications and has registered 15 patents. His research interest includes biotechnology and bioengineering with emphasis on environmental biotechnology. Leila Queiroz Zepka is currently an associate professor at the Department of Food Technology and Science, Federal University of Santa Maria, Brazil. She has more than 20 years of teaching and research experience. She is a technical and scientific consultant of several companies, agencies and scientific journals. She has 600 publications/communications and has registered 11 patents. Her research interest includes microalgal biotechnology with emphasis on biomolecules and novel products for food industry. Mariany Costa Deprá is currently a researcher at the Department of Food Science and Technology, Federal University of Santa Maria, Brazil. She is a technical and scientific consultant of companies and scientific journals. With more than 100 publications/communications, her research interest includes process engineering with emphasis on sustainability metrics and indicators.
FUNDAMENTALS, TECHNOLOGIES, AND MANAGEMENT. An Overview of the Trajectory
of the Food Industry: Addressing Expanding Societal Needs and Demands.
Concepts for Food Sustainable Production. Recent Changes in the Food Supply
Chain: Driving to Sustainability. The Sustainability Roadmap for the Food
Industry 4.0. Ecöfriendly and Cost¿effective Methods Applied to Sustainable
Food Industries. CONVENTIONAL TECHNOLOGIES IN THE FOOD INDUSTRY.
Sterilization Methods. Electromagnetic Radiation: A New Approach to
Sustainable Development in Food Sectors. Cooling. Food Freezing:
Transformation of Conventional Technology to Smart Processing. Food Drying.
Extrusion for the Sustainable Development of Novel Foods: Basics,
Principles, and Applications. SUSTAINABILITY EMERGING TECHNOLOGIES IN FOOD
INDUSTRIES. Ultrasound. Electrolyzed Water: An Innovative Alternative in
the Food Industry. High Hydrostatic Pressure Processing. Application of
Microwave Heating in Food Processing: Current Trends, Challenges and
Prospects. Ohmic Heating: Design, Thermal Performance, and Applications in
Food Processing. Microencapsulation of Functional Foods. SUSTAINABLE
MANAGEMENT IN FOOD INDUSTRIES. Wastewater Treatment in Sustainable Food
Industries. Strategies for Food Waste Valorizations and Products. Food
Waste Through Our Body: The Greatest Impact at the End of the Supply Chain.
of the Food Industry: Addressing Expanding Societal Needs and Demands.
Concepts for Food Sustainable Production. Recent Changes in the Food Supply
Chain: Driving to Sustainability. The Sustainability Roadmap for the Food
Industry 4.0. Ecöfriendly and Cost¿effective Methods Applied to Sustainable
Food Industries. CONVENTIONAL TECHNOLOGIES IN THE FOOD INDUSTRY.
Sterilization Methods. Electromagnetic Radiation: A New Approach to
Sustainable Development in Food Sectors. Cooling. Food Freezing:
Transformation of Conventional Technology to Smart Processing. Food Drying.
Extrusion for the Sustainable Development of Novel Foods: Basics,
Principles, and Applications. SUSTAINABILITY EMERGING TECHNOLOGIES IN FOOD
INDUSTRIES. Ultrasound. Electrolyzed Water: An Innovative Alternative in
the Food Industry. High Hydrostatic Pressure Processing. Application of
Microwave Heating in Food Processing: Current Trends, Challenges and
Prospects. Ohmic Heating: Design, Thermal Performance, and Applications in
Food Processing. Microencapsulation of Functional Foods. SUSTAINABLE
MANAGEMENT IN FOOD INDUSTRIES. Wastewater Treatment in Sustainable Food
Industries. Strategies for Food Waste Valorizations and Products. Food
Waste Through Our Body: The Greatest Impact at the End of the Supply Chain.
FUNDAMENTALS, TECHNOLOGIES, AND MANAGEMENT. An Overview of the Trajectory
of the Food Industry: Addressing Expanding Societal Needs and Demands.
Concepts for Food Sustainable Production. Recent Changes in the Food Supply
Chain: Driving to Sustainability. The Sustainability Roadmap for the Food
Industry 4.0. Ecöfriendly and Cost¿effective Methods Applied to Sustainable
Food Industries. CONVENTIONAL TECHNOLOGIES IN THE FOOD INDUSTRY.
Sterilization Methods. Electromagnetic Radiation: A New Approach to
Sustainable Development in Food Sectors. Cooling. Food Freezing:
Transformation of Conventional Technology to Smart Processing. Food Drying.
Extrusion for the Sustainable Development of Novel Foods: Basics,
Principles, and Applications. SUSTAINABILITY EMERGING TECHNOLOGIES IN FOOD
INDUSTRIES. Ultrasound. Electrolyzed Water: An Innovative Alternative in
the Food Industry. High Hydrostatic Pressure Processing. Application of
Microwave Heating in Food Processing: Current Trends, Challenges and
Prospects. Ohmic Heating: Design, Thermal Performance, and Applications in
Food Processing. Microencapsulation of Functional Foods. SUSTAINABLE
MANAGEMENT IN FOOD INDUSTRIES. Wastewater Treatment in Sustainable Food
Industries. Strategies for Food Waste Valorizations and Products. Food
Waste Through Our Body: The Greatest Impact at the End of the Supply Chain.
of the Food Industry: Addressing Expanding Societal Needs and Demands.
Concepts for Food Sustainable Production. Recent Changes in the Food Supply
Chain: Driving to Sustainability. The Sustainability Roadmap for the Food
Industry 4.0. Ecöfriendly and Cost¿effective Methods Applied to Sustainable
Food Industries. CONVENTIONAL TECHNOLOGIES IN THE FOOD INDUSTRY.
Sterilization Methods. Electromagnetic Radiation: A New Approach to
Sustainable Development in Food Sectors. Cooling. Food Freezing:
Transformation of Conventional Technology to Smart Processing. Food Drying.
Extrusion for the Sustainable Development of Novel Foods: Basics,
Principles, and Applications. SUSTAINABILITY EMERGING TECHNOLOGIES IN FOOD
INDUSTRIES. Ultrasound. Electrolyzed Water: An Innovative Alternative in
the Food Industry. High Hydrostatic Pressure Processing. Application of
Microwave Heating in Food Processing: Current Trends, Challenges and
Prospects. Ohmic Heating: Design, Thermal Performance, and Applications in
Food Processing. Microencapsulation of Functional Foods. SUSTAINABLE
MANAGEMENT IN FOOD INDUSTRIES. Wastewater Treatment in Sustainable Food
Industries. Strategies for Food Waste Valorizations and Products. Food
Waste Through Our Body: The Greatest Impact at the End of the Supply Chain.