Ultrasonic Degassing Equipment Of Detergent
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Ultrasonic Degassing Equipment Of Detergent

Ultrasonic Degassing Equipment Of Detergent

Ultrasonic Degassing equipment has been used in domestic large-scale detergent manufacturers in batches, and the effect is stable and effective

Product Details

Ultrasonic Degassing Equipment Of Detergent


Description:

Ultrasonic degassing is based on the principle of acoustic cavitation. When high-power ultrasonic waves are coupled into a liquid, the liquid is compressed and expanded in high-pressure and low-pressure cycles, respectively. During low-pressure cycles, tiny vacuum bubbles (so-called cavitation bubbles) are created that grow over multiple pressure cycles. During those cycles of bubble growth, dissolved gases in the liquid enter the vacuum bubble so that the vacuum bubble becomes a growing bubble. In addition, microturbulence and liquid jets cause vigorous stirring and mass transfer. These ultrasonic-generated conditions cause bubble coalescence, which is the unification of small dissolved bubbles with larger bubbles that rapidly rise to the surface of the liquid, where they leave the liquid.

The ultrasonic degassing equipment is started by the generator to start the body, and each equipment is equipped with a dedicated ground wire, which can avoid the equipment from contacting with water and corrosive (swelling) liquid levels, and can well avoid causing leakage. , please connect the ground wire according to the safety requirements. The equipment uses non-flammable detergents. Do not use flammable and explosive substances as detergents. The use of the equipment must ensure that it is far away from flammable and explosive substances. When users must use certain substances under special circumstances, they must confirm safety and take appropriate safety precautions. When the equipment is in operation, there may be factors that may cause personal injury such as high temperature, high pressure, electrical component terminals surface electrification, movement of the transmission mechanism, sudden pressure surges, etc. .


The advantage of the equipment is that the foam is formed by a large number of bubbles. In the early stage of foam formation, before a large number of bubbles do not remove the gas and liquid for degassing and degassing, or dissolve and mix in the liquid for degassing and degassing. The whole process of ultrasonic degassing equipment does not use any defoamer, it is a complete physical defoaming mode, also known as mechanical defoaming mode. For the surface foam that has been generated, the function of the device is not obvious, and it needs to be solved with a defoaming film.



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


Ultrasonic Degasification and De-Aeration is suitable for: 

Batch and Inline 

Low and High Viscosities 

Small and Large Volumes 

Cold and Hot Temperatures 

Versatile Installations 

24/7 Operation under Full Load



Applications of ultrasonic sonicator in degassing treatment


Degassing and defoaming by probe sonicators is required for multiple purposes of liquid treatments.

As we know, ultrasonic cleaning depends on the collapse of innumerable cavitation bubbles to achieve a favorable cleaning effect. Even so, the gas dissolved in cleaning solution diffuses into bubbles and dampen the process of implosion action, further to reduce the effectiveness of sonic cleaning. The reason is that the gas within bubbles produce a cushioning effect on collapsing, just like to compress a football being inflated.


Degassing is necessary procedure for the removal of dissolved gasses from liquid in an ultrasonic tank. The dissolved gas may migrate into these cavitation bubbles and accelerate the growth of the bubbles. Through the action of acoustic waves, the suspended bubbles are rised to the surface of liquid and then release the gas into air. Generally, the dissolved gasses within the cleaning solution can be removed in a few minutes.


Ultrasonic reactor

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