Lab Ultrasonic Emulsification Equipment
20khz 500w lab type ultrasonic homogenizer for oil -water emulsification
Product Details
20khz 500w lab type ultrasonic homogenizer for oil -water emulsification
| Model | SONO20-500 | SONO20-1000 | SONO20-1500 |
| Frequency | 20±0.5 KHz | 20±0.5 KHz | 28±0.5 KHz |
| Power | 500 W | 1000 W | 1500 W |
| Voltage | 220/110V | 220/110V | 220/110V |
| Temperature | 300 ºC | 300 ºC | 300 ºC |
| Pressure | 35 MPa | 35 MPa | 35 MPa |
| Max Capacity | 100-1000mL | 100-2000mL | 100-2500ML |
| Tip Head Material | Titanium Alloy | Titanium Alloy | Titanium Alloy |
Description
The generator produce ultrasonic mechanical energy to the horn to make more than 20000 times vibration per seconds,
These energy can not only stimulate or promote many chemical reactions, to speed up chemical reaction, can even change the direction of some chemical reaction, generate some unexpected effects and miracles. Generally considered the stems mainly from the phenomena of ultrasonic mechanical and cavitation effect, is that they change the result of the reaction conditions and the environment.
20 KHZ frequency of ultrasonic industry application, already been proved that it is the most efficient, and has large-scale application.Ultrasound in liquid medium, by mechanical action, cavitation effect and heat effect, produce mechanical, thermal, optical, electrical, and chemical and so on a series of effects. Especially high power ultrasonic, can produce strong cavitation, and thus formed in the local instantaneous high temperature, high pressure, vacuum and micro jet.

Application
• Dispersion
• Cell disruption
• Pharmacy sample prep
• Homogenization
• Emulsification
• Nanoparticle dispersion
• Atomization
• Graphene dispersion
• Biodiesel making;
• Liquidation,
• Crystallization,
• Extraction,
• Wastewater treatment,
• Accelerated reaction,
• kill microbes(cell disruption),
• Degradation of toxic organic pollutants
• antiscaling descaling in sewage treatment field
Effect
• increase in reaction speed
•increase in reaction output
•more efficient energy usage
• sonochemical methods for switching of reaction pathway
•performance improvement of phase transfer catalysts
• avoidance of phase transfer catalysts
•use of crude or technical reagents
• activation of metals and solids
• increase in the reactivity of reagents or catalysts
• improvement of particle synthesis
• coating of nanoparticles
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