FOOD SCIENCE & TECHNOLOGY | REVIEW ARTICLE Nutritional impact of ohmic heating on fruits and vegetables—A review
Ranvir Kaur, Khalid Gul, Anurag Singh
Abstract
Ranvir Kaur, Khalid Gul, Anurag Singh
Abstract
1 Abstract: Ohmic heating, also called electrical resistance heating, joule heating, or electro-conductive heating, is an advanced thermal food processing technique where heat is internally generated in a sample due to electrical resistance when electric current is passed through it. It is a novel technique which provides rapid and uniform heating, resulting in less thermal damage to the food product. According to the recent literature, plant products are most suitable and often used for ohmic heat processing. Beyond heating of fruits and vegetables, the applied electric field under ohmic heating causes various changes in quality and nutritional parameters which include inactivation of enzymes and micro-organisms, degradation of heat- sensitive compounds, changes in cell membranes, viscosity, pH, color, and rheology. Ohmic heating rate depends on the electrical field strength and electrical conductiv- ity of product. This review focuses on various factors affecting the electrical conduc- tivity of fruits and vegetables and the effect of ohmic heating on their quality and nutritional properties.
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1 Abstract: Ohmic heating, also called electrical resistance heating, joule heating, or electro-conductive heating, is an advanced thermal food processing technique where heat is internally generated in a sample due to electrical resistance when electric current is passed through it. It is a novel technique which provides rapid and uniform heating, resulting in less thermal damage to the food product. According to the recent literature, plant products are most suitable and often used for ohmic heat processing. Beyond heating of fruits and vegetables, the applied electric field under ohmic heating causes various changes in quality and nutritional parameters which include inactivation of enzymes and micro-organisms, degradation of heat- sensitive compounds, changes in cell membranes, viscosity, pH, color, and rheology. Ohmic heating rate depends on the electrical field strength and electrical conductiv- ity of product. This review focuses on various factors affecting the electrical conduc- tivity of fruits and vegetables and the effect of ohmic heating on their quality and nutritional properties.
Key concepts: Joule heating, Ohmic contact, Electric field, Electrical resistivity and conductivity, Materials science, Electric heating, Rheology, Thermal