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Ultrasonic Chemical Reactor Mixing and Extraction Device for Precision Instrument

Ultrasonic Chemical Reactor Mixing and Extraction Device for Precision Instrument

Package Size 110.00cm * 30.00cm * 30.00cm Package Gross Weight 26.000kg Basic Info. RPS-SONIC manufactures the most tech
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Description

Basic Info.
Model NO. RPS-SONO20
Material Titatium Alloy
Capacity Customized
Structure Single Tube
Tower Reactor Type Spray Tower Reactor
Condition New
Horn Materila Titanium
Max Capacity 10L/Min
Weight 25kg
Voltage 220V
Horn Size Customized
Frequency 20kHz
Transport Package Wooden
Specification 45*22*27
Trademark RPS-SONIC
Origin China
HS Code 8515900090
Production Capacity 200/Month
Packaging & Delivery
Package Size 110.00cm * 30.00cm * 30.00cm Package Gross Weight 26.000kg
Product Description

Basic Info.

Model NO.RPS-SON020-2000InstallationVetical
PressureMedium PressureConditionNew
Frequency20kHzPower2000W
Voltage220VHorn MaterilaTitanium
Horn SizeCustomizedWeight25kg
Transport PackageWoodenSpecification45*27*25cm
TrademarkRps-sonicOriginChina
HS Code8515900090Production Capacity200PCS/Month

Ultrasonic Chemical Reactor Mixing and Extraction Device for Precision Instrument

RPS-SONIC manufactures the most technologically advanced and reliable ultrasonic processors in the industry for applications such as: dispersion of nanoparticles, nanotubes and Graphene; cell lysing and cell disruption; sample prep; ChIP assay; homogenization; extraction; atomization; and more.

The very high energies produced by cavitation afford a means of creating smaller particle size, and a great many cases allow a reduction n the amount of emulsifying agent. The advantages of Ultrasonic Technology ultrasonic emulsification system Simple,low-cost design----Initial equipment costs area fraction(often one-fourth or one-fifth) of the outlay required for conventional equipment with similar output. Installation of RPS-SONIC emulsification system often merely means the replacement of an existing unit without change of production methods.For example, Ultrasound assisted extraction acts primarily upon the kinetic of the extraction process, and secondarily upon the interfacial area, through the eventual disintegration of larger particles. Compared with maceration, infusion or decoction, it improves the process decreasing both operating time and temperature while increasing the extraction yield. This intensive technique, biochemically safe unless overexposure, was used to obtain active principles with hypoglycaemic activity (sweet diterpenic steviol glycosides) from a medicinal plant with high economical potential: Stevia rebaudiana leaves. Distilled water or a mixture of water and ethanol in several ratios were employed as solvent. The active principles were quantified by HPLC. An Artificial Neural Network was used to model the ultrasound assisted extraction, due to its ability to cope with complex processes and superior generalization capacity

Ultrasonic Preparation of Nanoscale Devices
• Particle size uniformity, strong dispersion, crystal type control, simple preparation, high yield
• Ultrasound nano-fabrication of monodisperse, well-defined nanoparticles and reduced energy consumption
• Ultrasonic nanoprocessing is easier to achieve mesoscopic mixing than conventional mixing techniques, eliminating local concentration variations, increasing reaction rates, stimulating the formation of new phases, inhibiting reunion

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 as evidenced in this article excerpt:

Dispersions in vials (a) have coagulated CNTs in the body and at the bottom by means of bath sonication for 8 hours, (b) appear free-homogenous with probe sonication for 3 minutes, and (c) keep free-homogenous even after 4 months of sitting at room temperature. The concentration of Multi-Walled Carbon Nanotubes (MWCNTs) is 2500 mg/L and the MWCNTs/SDS ration is 1:10. (d) MWCNTs of (c) was diluted to 25 mg/L with deionized water.

Ultrasonic Chemical Reactor Mixing and Extraction Device for Precision Instrument

ModelRPS-SONO20
Frequency20±0.5 KHz
Power2000 W
Voltage220/110V
Temperature300 °C
Pressure35 MPa
Intensity of sound20 W/cm2
Max Capacity10 L/Min

Ultrasonic Chemical Reactor Mixing and Extraction Device for Precision Instrument

Unique password protection, escort your experiment
Touch keyboard, friendly man-machine interface, real-time display of ultrasonic power, running time, real-time temperature.
The ultrasonic power can be adjusted continuously and better experimental conditions can be explored
TFT large screen display, the program can be set to store 20 sets of experimental data, and directly call the experimental conditions, which is convenient and safe.
It has over-temperature, delay, and fault protection, and has independent over-temperature, delay, and fault alarm systems, which protect the test samples to a great extent.
Optional high and low temperature circulating bath, can control the temperature in the material reaction system at -40-200ºC
Optional RS232 communication interface, which can be upgraded to realize data transmission with PC or PLC and other upper computers for remote control.

Ultrasonic Chemical Reactor Mixing and Extraction Device for Precision Instrument

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