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Titanium Liquid Processor Sonochemistry Reactor With Digital Generator 28khz

Place of Origin China
Brand Name RPS-SONIC
Certification CE
Model Number RPS-SONO28
Minimum Order Quantity 1
Price USD
Packaging Details Carton
Delivery Time 10 days after payment
Payment Terms T/T, L/C

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Product Details
Material Titanium After-sales Service Provided Video Technical Support
Frequency 20KHZ-40KHZ Operation Mode Semi-automatic
Power 500W
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Titanium Liquid Processor

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28khz Liquid Processor

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Ultrasonic Liquid Processor 500W

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Product Description

28khz Titanium Liquid Processor Sonochemistry Reactor For Dispering With Digital Generator

Basic Info.

Model NO. RPS-SONO28 Pressure Medium Pressure
Condition New Frequency 28kHz
Generator Digital Generator Horn Titanium Alloy
Power 500W in Max Weight 8kg
Horn Size 2-8mm Transport Package Carton
Specification 45*27*25cm Trademark RPS-SONIC
Origin China    
Production Capacity 200PCS/Month    

 

 

 

 

 

 

 

 

 

 

 

Description

 

Model: RPS-SONO28

 

Frequency:28±0.5 KHz

 

Power:300W

 

Voltage:220/110V

 

 

Temperature:300 ºC

 

Max Capacity:1L/Min

 

Ultrasonic homogenizers, commonly referred to as "sonicators",disrupt tissues and cells through cavitation and ultrasonic waves. Basically, an ultrasonic homogenizer has a tip which very rapidly vibrates, causing bubbles in the surrounding solution to rapidly form and collapse. This creates shear and shock waves which tear apart cells and particles.

Ultrasonics / sonicators are great for breaking apart cells and subcellular structures in suspension. They are not good for homogenizing intact tissue. Ultrasonic homogenizers can also shear DNA, which could be a good thing or a bad thing depending on your application. Other applications include creating emulsions, dispersing nanoparticles, and reducing the size of particles in suspension. Sonicators generate a significant amount of heat so they may not work well with temperature-sensitive samples. Acoustic enclosures are highly recommended; after all, you're homogenizing using high-powered sound waves. You can learn more about ultrasonic homogenization in the application center.

High shear forces created by ultrasonic cavitation have the ability to break up particle agglomerates and result in smaller and more uniform particles sizes. The stable and homogenous suspensions produced by ultrasonics are widely used in many industries today. Probe sonication is highly effective for processing nanomaterials (carbon nanotubes, graphene, inks, metal oxides, etc.) and Sonicators have become the industry standard for:

  • Dispersing
  • Deagglomerating
  • Particle size reduction
  • Particle synthesis and precipitation
  • Surface functionalization

Probe sonication is significantly more powerful and effective when compared to ultrasonic cleaner baths for nanoparticle applications. A cleaner bath requires hours to accomplish what a probe Sonicator can do in minutes. Sonicators can create a stable dispersion that can remain in suspension for many months.

 

Application

 

  • The effect of power ultrasound in liquid is dispersion. Ultrasonic dispersion equipment is composed of ultrasonic vibration parts and ultrasonic special drive power supply.
  • Ultrasonic vibration components mainly include high-power ultrasonic transducer, horn and tool head, which are used to generate ultrasonic vibration and emit the vibration energy into the liquid.
  • Ultrasonic driving power supply is specially used to drive ultrasonic vibration parts work equipment, control the ultrasonic vibration parts of the various working states.
  • It converts ordinary mains electricity into high-frequency AC signals and drives the transducer to produce ultrasonic vibration.
  • The dispersion of ultrasonic in liquid mainly depends on ultrasonic cavitation of liquid.
  • Using ultrasonic dispersion, do not need to use dispersants, in many cases.
  • Ultrasonic dispersion can produce micron or even nano particles.
  • When the ultrasonic vibration is transmitted to the liquid, the strong cavitation effect will be excited in the liquid due to the strong sound intensity, and a large number of cavitation bubbles will be generated in the liquid.
  • As these cavitation bubbles are created and burst, microjets are created to break up the heavy solid particles of the liquid. At the same time, due to the vibration and dispersion of ultrasonic wave, the solid and liquid are more fully mixed, which promotes most chemical reactions.

 

Product photo


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