
Sonochemistry is the application of ultrasound in chemical reactions and processes.Usually apply in Graphene preparation, coating dispersion, silicon carbide disaggregation, crude oil demulsification, cell breakage, emulsification homogenization, oil refining mixing, biodiesel production, sewage treatment and so on, which are applied in dispersion, catalysis, extraction and other aspects.
Item No.:
HSS20-3000-IPayment:
T/T, Paypal, Western UnionProduct origin:
ChinaColor:
SilverShipping port:
Shanghai of NingboLead Time:
15
CNC Laboratory Ultrasonic Homogenizer 20khz 500watt Machine Acting On Liquid
Description:
Sonochemistry is the application of ultrasound in chemical reactions and processes. Cavitation occurs in chemical reactions. Bubbles form, grow and implode in liquids, resulting in local heating, local high pressure, huge heating and cooling rates, and liquid injection and other chemical phenomena.
Specification:
Model |
HSS20-500-L |
HSS20-1000-I |
HSS20-1500-I |
HSS20-2000-I |
HSS20-3000-I |
Frequency |
20±1 kHz |
20±1 kHz |
20±1 kHz |
20±1 kHz |
20±1 kHz |
Power |
500 W |
1000 W |
1500 W |
2000 W |
3000 W |
Voltage |
220±10% V |
220±10% V |
220±10% V |
220±10% V |
220±10% V |
Temperature |
150 ℃ |
150 ℃ |
300 ℃ |
300 ℃ |
300 ℃ |
Pressure |
Normal |
Normal |
35 MPa |
35 MPa |
35 MPa |
Intensity of sound |
>10 W/cm² |
>10 W/cm² |
>30 W/cm² |
>40 W/cm² |
>60 W/cm² |
Max Capacity |
> 100M L/Min |
> 5 L/Min |
> 15 L/Min |
> 20 L/Min |
> 30 L/Min |
Material Of Tip Head |
Titanium Alloy |
Titanium Alloy |
Titanium Alloy |
Titanium Alloy |
Titanium Alloy |
Advantage:
1.Automatic frequency modulation and vibration, without manual adjustment.
2.There is a temperature protection probe, which can effectively prevent the sample.
3.Stable power output, able to track and display the actual effective power output.
4. Increase in reaction speed
5. Increase in reaction output
6. More efficient energy usage
7. Sonochemical methods for switching of reaction pathway
8. Performance improvement of phase transfer catalysts
9. Avoidance of phase transfer catalysts
10. Use of crude or technical reagents
11. Activation of metals and solids
12. Increase in the reactivity of reagents or catalysts
13. Improvement of particle synthesis coating of nanoparticles
Application:
1. Preparation of activated metals by reduction of metal salts
2. Generation of activated metals by sonication
3. Sonochemical synthesis of particles by precipitation of metal (Fe, Cr, Mn, Co) oxides, e.g. for use as catalysts
4. Impregnation of metals or metal halides on supports
5. Preparation of activated metal solutions
6. Reactions involving metals via in situ generated organoelement species
7. Reactions involving non-metallic solids
8. Crystallization and precipitation of metals, alloys, zeolithes and other solids
9. Modification of surface morphology and particle size by high velocity interparticle collisions
10.Formation of amorphous nanostructured materials, including high surface area transition metals, alloys, carbides, oxides and colloids
11.Agglomeration of crystals
12. Smoothing and removal of passivating oxide coating
13. Micromanipulation (fractionation) of small particles
14. Dispersion of solids
15. Preparation of colloids (Ag, Au, Q-sized CdS)
16. Intercalation of guest molecules into host inorganic layered solids 13. Sonochemistry of polymers
17.Degradation and modification of polymers
18. Synthesis of polymers
19. Sonolysis of organic pollutants in water
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