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CORE TECHNOLOGIES
 
 

     Mixing Technologies – One of the most significant problems in chemical processing is inadequate mixing. Resodyn Corporation has two unique technologies that dramatically improve mixing in many different applications. These technologies are called ResonantAcoustics® and ResonantSonics® . Both technologies dramatically improve gas-liquid mixing and liquid-liquid mixing as compared to standard propeller driven techniques.


ResonantAcoustics®
Resodyn Corporation has developed an advanced mixer that uses low-frequency, high-intensity sound energy, rather than impellers for mixing. The ResonantAcoustics® technology is applicable to a broad range of mixing applications that include liquid-gas, liquid-liquid, liquid-gas-solid and powder-powder systems.

    Features:
•  Capable of continuous flow or batch applications
•  Lab scale to industrial scale systems are available
•  No internal parts such as props to clean
•  Low shear environment

    Benefits:
•  Increased conversion and yield
•  Lower net cost
•  Excellent results possible for hard to mix components

    Applications:
•  Enzymatic reactions with fragile enzyme particles
•  Mixing solid pigments
•  Mixing gelled propellants

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ResonantSonics®
Resodyn Corporation has developed mixing technology that operates in the audible spectrum. The ResonantSonics® technology dramatically improves gas-liquid and liquid-liquid mixing as compared to standard propeller driven techniques.

    Features:
•  Capable of continuous flow or batch applications
•  Industrial scale-up possible
•  Enzymatic, metal and supported acid catalyst systems supported
•  Uniform shear environment

    Benefits:
•  Increased conversion and yield
•  Lower net cost
•  Excellent results possible for hard to mix components

    Applications:
•  Mining processes such as solvent extraction and flotation
•  Aeration processes such as aquaculture
•  Industrial silicon and carbon ester production using solid catalysts
•  Controlled catalytic hydrogenation of oils for melting point control
•  Biochemical reactions with shear sensitive enzyme catalysts
•  Crystallization
•  Water disinfection

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