
Nanoemulsion Microjet Laboratory Equipment
The physical shear and turbulence generated in the ultrasonic system originate from the phenomenon of acoustic cavitation. Due to the pressure fluctuations of sound waves in the entire aqueous medium, air pockets in the water act as nuclei, and microbubbles can form, grow and collapse within a few microseconds, leading to micro-scale implosion and providing strong local shearing force.
Product Details
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Description:
Ultrasound is mechanical waves at frequencies greater than 20 kHz . Ultrasound can be divided into high intensity (HIU, 10–1000 W cm−2) and low intensity (<1 W cm−2) ultrasound . Recently, ultrasound as a green technology has been utilized in several applications such as phytochemicals extraction, drying, processing of fruits, juices and dairy products, freezing, crystallization processes, improving the functional properties of food proteins, microbial inactivation, encapsulation and emulsification.
The formation and collapse of bubbles induced by acoustic cavitation could disrupt both oil droplets and cellulose crystals during emulsification, facilitating the formation of emulsions with small droplets. The acoustic cavitation produced during ultrasonic emulsification could disintegrate large chitin nanoparticles into smaller ones. The formation of smaller nanoparticles reduced the interfacial tension between the oil and aqueous phases, and thereby improved the stability of emulsions.
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 |
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|
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 |
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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.
Why Ultrasonic Nanoemulsion Equipment need?
Ultrasound technology is a promising non-thermal technique that has been utilized in many food applications. An increase in demand for eco-friendly and energy-efficient technologies will result in increased utilization of ultrasound technology in many applications. Many researchers studied the effects of using HIU for emulsion formation on the physicochemical properties of emulsions stabilized using different emulsifiers and surfactants. Results showed that HIU is more energy-efficient than HPH and microfluidizers. Moreover, different emulsifiers showed diverse effects on emulsion properties. Some Ultrasonic homogenizer devices have been used on a large scale, the research institutes and related industry companies still necessary to do some test before industry application.Because the different PH, material, temperture, presstare all leads different result, so that lab sonicator are necessary before different industry application.
As the economy and technology progresses, the market demands higher quality Nanoemulsion Microjet Laboratory Equipment, so the only way to meet the market demand is to keep improving technology. We believe that in order to jointly build and maintain a good ecological environment for the industry, whether it is suppliers, industry peers or customers, we should complement each other's advantages and achieve mutual benefit. According to the modern concept of quality, product quality is the sum of the characteristics of products that meet the use requirements.
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