Recent Innovations in Emulsion Science and Technology for Food Applications
Последние инновации в науке и технологии эмульсий для пищевых применений
2021-05-13
SCID: 54.1/hzj3gwqg
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Food emulsion technologyHigh internal phase emulsionsMultiple emulsionsNanoemulsionsPickering emulsions
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Abstract (AI)
Emulsion technology has been used for decades in the food industry to create a diverse range of products, including homogenized milk, creams, dips, dressings, sauces, desserts, and toppings. Recently, however, there have been important advances in emulsion science that are leading to new approaches to improving food quality and functionality. This article provides an overview of a number of these advanced emulsion technologies, including Pickering emulsions, high internal phase emulsions (HIPEs), nanoemulsions, and multiple emulsions. Pickering emulsions are stabilized by particle-based emulsifiers, which may be synthetic or natural, rather than conventional molecular emulsifiers. HIPEs are emulsions where the concentration of the disperse phase exceeds the close packing limit (usually >74%), which leads to novel textural properties and high resistance to gravitational separation. Nanoemulsions contain very small droplets (typically d < 200 nm), which leads to useful functional attributes, such as high optical clarity, resistance to gravitational separation and aggregation, rapid digestion, and high bioavailability. Multiple emulsions contain droplets that have smaller immiscible droplets inside them, which can be used for reduced-calorie, encapsulation, and delivery purposes. This new generation of advanced emulsions may lead to food and beverage products with improved quality, health, and sustainability.
Key Findings
1
High internal phase emulsions contain more than 74% dispersed phase and offer novel textures with high resistance to gravitational separation.
2
Multiple emulsions contain nested immiscible droplets and support reduced-calorie formulations, encapsulation, and controlled delivery applications.
3
Nanoemulsions typically have droplets smaller than 200 nm, providing optical clarity, stability against separation and aggregation, rapid digestion, and high bioavailability.
4
Pickering emulsions use synthetic or natural particles instead of conventional molecular emulsifiers, providing an alternative stabilization strategy.
5
Recent advances in emulsion science enable new food-quality and functionality improvements beyond conventional emulsified products.
Research Object
Advanced emulsion technologies for food and beverage applications, including Pickering emulsions, high internal phase emulsions (HIPEs), nanoemulsions, and multiple emulsions
Research Subject
Their physicochemical, textural, stability, optical, digestion, bioavailability, encapsulation, and delivery properties relevant to improving food quality, functionality, health, and sustainability
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2021-05-13
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