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Proprietary Process

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NANO Cavitation Flow through multi stage Reactors

 Ambient temperature process Instant reaction Extremely powerful NANO - Cavitation High yield

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Flow-Through NANO Cavitator (the formation, growth, and implosive collapse of gas or vapor-filled bubbles in liquids) can have substantial chemical and physical effects. While the chemical effects of acoustic cavitation (i.e., sonochemistry and sonoluminescence) have been extensively investigated during recent years, little is known about the chemical consequences of hydrodynamic cavitation created during turbulent flow of liquids. Cavitation Technologies Inc., developed new innovative patent pending single stage plazma cavitation process which can be applied to virtually any industry.
 

bublcrum Cavitaition


In heterogeneous liquid–liquid reactions, cavitational collapse at or near the interface will cause disruption and mixing, resulting in the formation of very fine emulsions. When such emulsions are formed, the surface area available for the reaction between the two phases is significantly increased, thus increasing the rates of reaction. This is beneficial, particularly in the case of phase transfer-catalysed reactions or biphasic systems.

* All reaction is happening in ambient temperature and no agitation or mixing time is required.

Propri

Table 3. It can be seen from Table 3 that NANO cavitation is about 40 times more efficient compared to acoustic cavitation and 160 to 400 times more efficient compared to the conventional agitation/heating/refluxing method.

Before Cavitation    After Cavitation

 
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