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Model |
SONO20-1000 |
SONO20-2000 |
SONO15-3000 |
SONO20-3000 |
Frequency |
20±0.5 KHz |
20±0.5 KHz |
15±0.5 KHz |
20±0.5 KHz |
Power |
1000 W |
2000 W |
3000 W |
3000 W |
Voltage |
220/110V |
220/110V |
220/110V |
220/110V |
Temperature |
300 ºC |
300 ºC |
300 ºC |
300 ºC |
Pressure |
35 MPa |
35 MPa |
35 MPa |
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 |
Tip Head Material |
Titanium Alloy |
Titanium Alloy |
Titanium Alloy |
Titanium Alloy |
Extraction has gone from rudimentary ethanol solvent based procedures, which technically could be done in a garage, to increasingly complex and expensive devices. These new extractors require significant technical know-how and typically require a substantial financial investment, sometimes into the tens of thousands of dollars.
Ultrasonic extractors also referred to as ultrasonic emulsifiers, are part of the new wave of extraction science. This innovative method is substantially less costly than other advanced technologies on the market. This has opened up the playing field for small to medium-sized operations to significantly improve their extraction processes.
Sonication, a term which refers to the use of ultrasonic waves, has become increasingly popular since its release. It comes as no surprise to industry veterans, who know that most commonly practiced extraction techniques come with unavoidable problems. The benefits of sonication easily beat out the competition, and often with much less investment.
Ultrasonic extraction has a number of benefits, for a producer's bottom line as well as the quality of the final product. For one, sonication is a much more environmentally friendly extraction method that does not rely on harsh solvents to extract the cannabinoid. Another main reason for the rise of ultrasonic extraction is that the entire process takes a matter of minutes to complete. Other methods take hours, sometimes days to deliver a final product. Plus, as mentioned earlier, it is much more economical than other mechanisms.
The mechanism is widely adaptable to many different applications, from commercial to industrial, to medicinal products. The ultrasonic extractor can be used with many different solvents. Depending on what the final product requires, an ultrasonic extraction method can work with a variety of substances such as ethanol, CO2, H2O, olive oil, coconut oil, and many others.
Importantly, for producers who care about preserving the integrity and concentration of cannabinoids and terpenes, ultrasonic extractors do not rely on heat. Extraction methods which rely on high heat quickly destroy the sensitive cannabinoid content, which subsequently destroys much of the whole-plant medicinal benefit. Many suppliers advertise the fact that these extraction methods are extremely low thermal and do not require temperatures to go above 60 degrees Celsius.