Newly Developed Taylor Vortex Flow Nano Reactor
Achieves High Shearing Force, High Roundness in a Short Time, Accurate Particle Size
- Uniform Mixing of Gas and Liquid
- Accurate Particle Size Distribution
- Improved Sphericity
- Continuous Production Possible
- Considerable Time Reductions
Differences from Stirring Reaction Equipment Available on the Market
High extrudability =
Uniform particle size
Stable vortex flow,
provides high extrusion performance!

High shearing force =
Better refinement/
sphericity
Narrow gaps with a mlnlmum of 0.1mm, high-speed rotation up to 600rpm provides high shear force!

Continuous production =
Cost reduction
Continuous production enables
compact equipment and automation!

Prevent blockages
with temperature
control ±0.2!
±5μm rotating shaft accuracy
prevents heating!
Completely eliminates sliding heat with a specially designed double mechanical seal!
Jacket temperature control
In narrow gaps
significantly increases heat transfer area per volume!

Use in a Wide Range of Fields Can Be Expected
Fields and Applications
Medicine Skin lotions/Creams (stabilization of emulsions, improved texture/feel)
Drug/Delivery/Systems (more efficient transportation of medicinal properties to affected area)
Bulk drug materials (crystallization/precipitation)
Organic electroluminescence emitters (improved dispersibility for increased emission intensity/speed)
Functional resin pigments (improved stability)
CNT (carbon nanotubes: improved conductivity)
High-functionality food materials (improved substance absorption efficiency in supplements, dairy products, nutritional supplementary food, etc.)
Liquid food (same as above)
Flocculation of solids in waste water treatment
Application Cases
Gas, liquid and solid is poured into a liquid medium to form Taylor vortex flow. The action of mixing like this promotes a chemical reaction and produces new substance.
-
High Sphericity
<chemical materials> SEM images
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Accurate Particle Size Distribution
Particle size distribution
The particle size is controlled by changing the gap between the inner and outer tubes, number of rotation and flow rate. This enables substance having a small through to a large diameter to be produced.


