
Ultrasonic Equipment for Emulsification, Biodiesel Extraction, Oil Separation
Nano-emulsions can be used in innumerable applications and different industries. Pharmacy and drug delivery can be mentioned as one of the most important field where nanoemulsions are utilized as nano-carriers treating a wide variety of diseases. Antibiotic , anticonvulsant, and antihypertensive are of those recent drugs solubilized in nano-emulsions .
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Description:
Nano-emulsions can be used in innumerable applications and different industries. Pharmacy and drug delivery can be mentioned as one of the most important field where nanoemulsions are utilized as nano-carriers treating a wide variety of diseases. Antibiotic , anticonvulsant, and antihypertensive are of those recent drugs solubilized in nano-emulsions .
Furthermore, the application of nanoemulsions in food and nutrition science and technology is a field about which researchers are working to produce reliable, healthier, and safer food products. Nanoemulsion technology is particularly used in food encapsulation and processing, storage processes and protections, as well as delivery systems for many bioactive lipophilic compounds . Performance and efficiency of those nanoemulsions have been found as considerable than those conventional emulsions and they prevent food degradation and enhance bioavailability .
Nanoemulsions have also been increasingly employing in cosmetics especially for controlled cosmetic delivery and active ingredients to particular skin layers . They are usually thermodynamically stable, transparent and provide protection against hydrolysis and oxidation . Due to very small droplet size and its high surface area, nanoemulsions have a considerable bioactive effect allowing rapid and efficient penetration into the skin. Cosmetic nanoemulsions do not usually exhibit sedimentation, coalescence or flocculation being commonly reported for those macroemulsions . Those nanoemulsions used in cosmetics usually require low energy and low amount of surfactant compared to microemulsion .
Water and oil, as two fluids with many applications, have exclusive properties apiece. Higher vaporization temperature, lubricity and durability in oil and lower viscosity, nature compatibility and availability in water are some of the reasons extending the usage of these fluids. There are many industries where water and oil are simultaneously used ; however, producing nano- emulsions or miniemulsions (i.e. emulsions commonly with the droplet size range of 50–500 nm , constituted of a few immiscible fluids with stable properties) still is a challenging field in many industries . In order to produce homogenous nano-emulsions, different processes, e.g. reducing oil phase concentration, using surface active materials (surfactants), high speed stirring, applying high pressure, and ultrasonic processing technique have been developed . We aim to focus on the last method, i.e. ultrasonic processing technique.
Some investigators prepared their nanoemulsion by ultrasonic emulsification method and used it for polymerization, encapsulation or crystallization. Some other researches utilized the emulsification in food industries, pharmaceutical and cosmetics , biodiesel , atomization and washing. The emulsification method has recently been employed as one of the most effective and efficient methods for preparing homogenous nano-emulsions. an ultrasonic transducer (i.e. the main part of an ultrasonic system) typically made of piezoelectric ceramics tighten by a steel bolt between a backing part (usually made of a steel material) and a matching part (usually made of titanium or aluminum alloy) is used to produce ultrasonic vibrations. In liquid or semi-solid materials, the UPT generates an intensive acoustic cavitation field breaking up, for example, liquid/liquid interfaces of oil- droplets, facilitating nanoemulsions preparations with very small mean droplet diameter size (MDDS) and much more stability duration.
Parameter:
Model/Data | Sono-20-1000 | Sono-20-2000 | Sono-20-3000 | Sono-15-3000 |
Frequency | 20±0.5 KHz | 20±0.5 KHz | 20±0.5 KHz | 15±0.5 KHz |
Power | 1000W | 2000W | 3000W | 3000W |
Voltage | 110/220V | |||
Temperature | 300℃ | |||
Pressure | 35 MPa | |||
Intensity of sound | 20 W/cm² | 40 W/cm² | 60 W/cm² | 60 W/cm² |
Max Capacity | 10 L/Min | 15 L/Min | 20 L/Min | 20 L/Min |
Horn Material | Titanium | |||
Application:
Phacoemulsification has been applied in a variety of fields, and it plays a unique role in each field.
There are many industrialized phacoemulsification applications. Ultrasonic emulsification is one of the earliest technologies used in food processing. For example, soft drinks, ketchup, mayonnaise, jam, artificial milk, baby food, chocolate, salad oil, oily sugar water and other mixed foods used in the food industry have been tested and adopted at home and abroad, and improved The effect of product quality and production efficiency, and water-carotene emulsification has been successfully tested and used in production.
We have outstanding technological innovation capabilities and the ability to provide customers with overall solutions for Ultrasonic Equipment for Emulsification, Biodiesel Extraction, Oil Separation. We follow the pace of national development strategic planning, focus on improving market demand, and provide high quality products and total solutions for our customers. In recent years, we have actively responded to the external economic situation and our own development requirements to further enhance our market competitiveness, risk resistance and profitability.
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