Ultrasonic Homogenizer
A critical component of any sample preparation is making the sample homogeneous. However, when working with a large number of samples, this is often a time-consuming and labor-intensive task. The act becomes even more tedious and cumbersome when one needs to break down a large, tough solid to a submicron level, since this requires multiple pieces of ultrasonic homogenizing equipment.
Product Details
20kHz Ultrasonic Homogenizer Lab Equipment - 500W High Power Cell Disruptor for DNA/RNA Extraction

Ultrasonic Homogenizer
Ultrasonic homogenizers use high frequency sound waves to disrupt and homogenize cells and tissue samples. They work by generating sound waves in the ultrasonic range (typically 20 kHz to 40 KHz) and directing them through a probe or horn that is placed in contact with the sample. The sound waves cause the cells or tissue to vibrate rapidly, which breaks them down into smaller pieces. This process is known as cavitation.
Ultrasonic homogenizers which are used in lab and industry for numerous applications. it can be used for various applications, including:Cell Disruption,Emulsification,Dispersion,Degassing,Homogenization,Chemical Reactions.
The RPS-SONO20 Pilot machine simplifies sample prep by combining mechanical and ultrasonic (sonication) homogenizing methods into an automated, closed, compact and timesaving unit. Its unique design allows the use of each homogenizing method dependently or independently of each other within a programmable or manual mode. The automation of this system allows for repeat processing and consistent results, which frees up a large amount of valuable lab time.

Ultrasonic homogenizer Description

Ultrasonic homogenizer is popular used for emulsification, separate, dispersion, homogenize, extract, degas, cleaning, speed up chemical reaction.
Ultrasonic cell disruption system ( crusher ) is a multi-function & multi-purpose instrument, which use high strength ultrasonic to cause cavitation effect in liquid, for material ultrasonic processing. It could be used to crush a variety of animal & plant cells, viruses cells, also suitable for emulsification, separate, homogenization, extraction, defoaming, cleaning and speed up chemical reaction,etc.
Materials can be processed in an infinite loop in small batches by this RPS-SONO20 Pilot machine, which is convenient for us to obtain more useful experimental data for mass production, and can also achieve small-scale production instead of simple experiments.
Ultrasonic homogenizers 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℃ |
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Pressure |
35 MPa |
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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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Applications of Sonochemistry
•Sonochemistry has been used for synthesis of composites for energy storage applications like:
1. Ultrasound assisted synthesis has been used for preparation of platinum-ruthenium nanoparticles, gold and platinum nanoparticles etc. for fuel cell electrodes.
2. Synthesis of Cu2O-Graphene, graphene oxide-Fe2O3for lithium ion battery electrodes.
3. Primary/Binary/Ternary nanocomposites which gave good specific capacitance, power density, energy density and cyclic stability applicable for electrode material in Supercapacitors. Nanocomposites of carbon materials (CNT, graphene, etc), conducting polymer and metal oxides due to Synergistic effect possessed enhanced electrical properties.
Advantages of Sonochemistry
•Ultrasound assisted synthesis aids in preparation of uniformly distributed and uniformly sized nanocomposites in short time and utilizing less energy as compared to methods like mechanical attrition, electrodeposition etc.
•High reaction rates can be achieved using sonochemistry, resulting in time efficient synthesis.
•Enhanced properties were observed in the field of kinetics, selectivity, extraction, dissolution, filtration, crystallinity.
•Till today the maximum specific capacitance reached by the supercapacitor electrode material of which as prepared using sonochemical method is ≈1000-1200 F/g whereas that for hydrothermal method was found to be ≈80-100 F/g and that for solvothermal is ≈200F/g.







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