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Understanding and Measuring the Shelf-Life of Food (Woodhead Publishing Series in Food Science, Technology and Nutrition)

معرفی کتاب «Understanding and Measuring the Shelf-Life of Food (Woodhead Publishing Series in Food Science, Technology and Nutrition)» نوشتهٔ ed. by R. Steele، منتشرشده توسط نشر CRC press; Woodhead publ. در سال 2004. این کتاب در فرمت pdf، زبان انگلیسی ارائه شده است.

The shelf-life of a product is critical in determining both its quality and profitability. This important collection reviews the key factors in determining shelf-life and how it can be measured. Part one examines the factors affecting shelf-life and spoilage, including individual chapters on the major types of food spoilage, the role of moisture and temperature, spoilage yeasts, the Maillard reaction and the factors underlying lipid oxidation. Part two addresses the best ways of measuring the shelf-life of foods, with chapters on modelling food spoilage, measuring and modelling glass transition, detecting spoilage yeasts, measuring lipid oxidation, the design and validation of shelf-life tests and the use of accelerated shelf-life tests. Understanding and measuring the shelf-life of food is an important reference for all those concerned with extending the shelf-life of food. Reviews the key factors in determining shelf-life and how they can be measured Examines the importance of the shelf-life of a product in determining its quality and profitability Brings together the leading international experts in the field The shelf-life of a product is critical in determining both its quality and profitability. This important collection reviews the key factors in determining shelf-life and how it can be measured.Part one examines the factors affecting shelf-life and spoilage, including individual chapters on the major types of food spoilage, the role of moisture and temperature, spoilage yeasts, the Maillard reaction and the factors underlying lipid oxidation. Part two addresses the best ways of measuring the shelf-life of foods, with chapters on modelling food spoilage, measuring and modelling glass transition, detecting spoilage yeasts, measuring lipid oxidation, the design and validation of shelf-life tests and the use of accelerated shelf-life tests.Understanding and measuring the shelf-life of food is an important reference for all those concerned with extending the shelf-life of food. Reviews the key factors in determining shelf-life and how they can be measured Examines the importance of the shelf-life of a product in determining its quality and profitability Brings together the leading international experts in the field The shelf-life of a product is critical in determining both its quality and profitability. Understanding and Measuring the Shelf-Life of Food reviews the key factors in determining shelf-life and how it can be measured. Part 1 examines the factors affecting shelf-life and spoilage, with individual chapters on the major types of food spoilage, the role of moisture and temperature, spoilage yeasts, the Maillard reaction, and the factors underlying lipid oxidation. Part 2 addresses the best ways of measuring the shelf-life of foods, with chapters on verification and validation of food spoilage models, measuring and modelling the glass transition temperature, detecting spoilage yeasts, and measuring lipid oxidation.Featuring contributions from an international panel of authors, this is a valuable reference for all those concerned with extending the shelf-life of food. The shelf-life of a product is critical in determining both its quality and profitability. This important collection reviews the key factors in determining shelf-life and how it can be measured. Part 1 examines the factors affecting shelf-life and spoilage, including individual chapters on the major types of food spoilage, the role of moisture and temperature, spoilage yeasts, the Maillard reaction and the factors underlying lipid oxidation. Part 2 addresses the best ways of measuring the shelf-life of foods, with chapters on modelling food spoilage, measuring and modelling glass transition, detecting spoilage yeasts, measuring lipid oxidation, the design and validation of shelf-life tests and the use of accelerated shelf-life tests All food products are composed of biological raw materials.
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