Приклади вживання Ultrasonic emulsification Англійська мовою та їх переклад на Українською
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Click here to learn more about ultrasonic emulsification!
Ultrasonic emulsification allows to formulate high-quality asphalt emulsions.
Click here to learn more about the ultrasonic emulsification and about its effects on the production of margarine!
Ultrasonic emulsification is a well-established efficient technique to form nano-droplets and liposomes.
Click at the graphic above to see sample results for the ultrasonic emulsification of 10% water in motor oil(Velocite 3, Mobil Oil, Hamburg Germany).
The ultrasonic emulsification results in nano-sized particles and a uniform distribution.
As alternative surfactant,biopolymers such gum arabi or WPI can be used in ultrasonic emulsification processes as food-grade stabilizers.
The ultrasonic emulsification is an effective means for generating fine-size fuel/water-emulsions.
Viscosity and rheology of an asphalt emulsion emulsions can be influenced and adjusted by the emulsifier concentration andthe energy input during ultrasonic emulsification.
The ultrasonic emulsification process results in a nano waxemulsion with a very high stability.
But also micro extraction, e.g. for analytical purposes, can be improved by sonication,too(e.g. ionic liquid-based micro-extraction with ultrasonic emulsification).
Ultrasonic emulsification is a facile and reliable technique to produce stable micro- and nano-emulsions.
Accessories such as Hielscher's unique MultiPhaseCavitator, a flow cell insert that injects the second phase via cannulas directly into the cavitational hot-spot(see pic. left),help to setup an optimal ultrasonic emulsification system.
The ultrasonic emulsification technology enables for a more efficient use of fuels, such as heavy fuels or….
Due to the high oil concentration of 40-90%, it is very important to apply high sheer forces to create an uniform,fine-size emulsion. Ultrasonic emulsification is documented as fast and efficient technique for formulating stable nanoemulsion with very small droplet diameter and low polydispersity.
Ultrasonic emulsification and dispersion is ideal to prepare master batches of highly concentrated asphalt emulsions.
Chandrasekaran, Natarajan(2013): Ultrasonic emulsification of food-grade nanoemulsion formulation and evaluation of its bactericidal activity.Ultrasonic Sonochemistry 20, 2013. 338-344.
Ultrasonic emulsification is a powerful and reliable processing method to prepare stable food emulsions on industrial scale.
Ultrasonic emulsification works for both emulsion types and achieves good electrical stability of the internal brine or water phase.
Ultrasonic emulsification a a reliable, proven technique to prepare stable, fine-size food emulsions. The ultrasonic emulsion….
Ultrasonic emulsification is a powerful and reliable technique to emulsify water and oil(fuel, crude, diesel etc.) by creating nano-sized droplets.
The ultrasonic emulsification technology enables for a more efficient use of fuels, such as heavy fuels or diesel, by mixing water into the base fuel.
Since ultrasonic emulsification parameters can be precisely controlled, the sonication impact on the emulsion can be adjusted to the targeted asphalt quality.
Ultrasonic emulsification is a facile and reliable technique to produce stable micro- and nano-emulsions As alternative surfactant, biopolymers such gum arabi or….
Ultrasonic emulsification results in a self stable plant milk, whilst ultrasonic preservation and inactivation of microorganisms ensures microbial stability.
As ultrasonic emulsification provides droplets in the submicron- and nano-range, the sonication process helps to reduce spoilage and to enhance the shelf-life of margarine and other spreads.
Ultrasonic emulsification is based on the principle of cavitation, in which high intensity ultrasound waves and its high velocity liquid jets shear the droplets' surface, creating thereby small droplets and stable emulsions.
Ultrasonic emulsification and dispersion is a well established technique to produce nano-enhanced formulations such as nano-emulsions, liposomes, cyclodectrin complexes, and nano-particles(e.g. core-shell nanoparticles) loaded with bioactive substances.
To improve the ultrasonic emulsification process, Hielscher has developed the patent-pending flow-cell insert MultiPhaseCavitator which features the injection of the second phase as fine liquid streams over injection cannulas directly into the cavitational zone resulting in an ultra-fine emulsion.
Since the ultrasonic emulsification process can be precisely controlled, ultrasonic emulsification and the subsequent process of forming solid-lipid nanoparticles is capable to produce loaded nanoparticles sonication can produce significantly lower droplet sizes in comparison to conventional emulsion methods.