Industrial Ultrasonic Anti-Fouling Device for Heat Exchanger

Industrial Ultrasonic Anti-Fouling Device for Heat Exchanger

Investigations at different materials, such as aqueous solutions of nanoparticulate siliciumdioxid powder and spray frozen agglomerates with a variable solid content have demonstrated the considerable advantage of ultrasound when compared with other technologies, such as rotor-stator mixers (e.g. turrax) or colloid mills.

Product Details

We should strive to achieve the effective integration of resources in the world with our own creation and action, and provide customers with higher quality Industrial Ultrasonic Homogenizer, ultrasonic cannabis oil emulsification device, sonicator with chiller and overall technical solutions. We attract customers with high quality products, move customers with considerate service and offer customers with preferential prices. Our company has strong technical force, advanced research methods, perfect production process and advanced instruments, and strong new product development capability. Facing the downward pressure of the global economy and the unprecedentedly severe environmental protection control, we insist on solving the difficulties faced by the enterprise by means of development.

Description:

Ultrasonic liquid processor have a wide range of applications, including disintegrating cells and biological tissues, DNA protein extraction, RNA hydrolysis, and protein microencapsulation in biology. In chemistry, they are used to accelerate and increase reactions output. They are also used for Earth and sediments treatments in the environment field, as well as quality control, R&D, sample gas removal, dissolution and homogenization, emulsion, and dispersion in general analysis. Dispersion by ultrasound is a consequence of microturbulences caused by fluctuation of pressure and cavitation. ultrasonic cavitation is very effective in breaking agglomerates, aggregates and even primaries. When ultrasound is being used for the milling of high concentration batches, the liquid jets streams resulting from ultrasonic cavitation, make the particles collide with each other at velocities of up to 1000km/h. This breaks van der Waals forces in agglomerates and even primary particles. Large particles are subject to surface erosion (via cavitation collapse in the surrounding liquid) or particle size reduction (due to fission through interparticle collision or the collapse of cavitation bubbles formed on the surface).We can supply ultrasonic liquid processor 20Khz ~ 40Khz, and capacity 50ml to tons/hour. O Choose RPS-SONIC for reliable and high-quality ultrasonic homogenizer solutions tailored to your specific needs.


Ultrasonic liquid processing is described by a number of parameters. Most important are amplitude, pressure, temperature, viscosity, and concentration. The process result, such as particle size, for a given parameter configuration is a function of the energy per processed

volume. The function changes with alterations in individual parameters. Furthermore, the actual power output per surface area of the sonotrode of an ultrasonic unit depends on the parameters.

So we will collect many information before your order. Or we will recommend buy one set for test first, to found the best work parameter and then producing in large scale.


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

Temperature

300℃

Pressure

35 MPa

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


Application:

Typical applications of ultrasonic sonochemistry include ultrasonic homogenization, phacoemulsification, ultrasonic dispersion, depolymerization and wet grinding (particle size reduction), cell disruption and disintegration, extraction, degassing, and sonochemical processes;

Ultrasonic dispersion does not require the use of emulsifiers. In many cases, the diameter of the dispersed particles can reach 1μm or less. It can be carried out between solid, liquid, and gas phases of the same substance, or between different solids, liquids and gases. It has been widely used in food sample detection and analysis, preparation of nanomaterials, etc.

Such like :

● Paint, titanium oxide, iron oxide, carbon, etc. are dispersed in water or solvent.

● Graphene micronization

● Dispersion of fluorescent materials

● Dispersion of photosensitive materials

● Dispersion of dyes in molten paraffin

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Therefore, the performance and effects of our Industrial Ultrasonic Anti-Fouling Device for Heat Exchanger is not inferior to imported product. We hope to further expand the domestic and overseas markets, and sincerely hope that friends from all walks of life will support and cooperate, and on the premise of a win-win situation, let us become partners for common development. We insist that "today's best performance is tomorrow's minimum standard".

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