NANOPOREX
Engineering the Gas–Liquid Interface
NANOPOREX-S is an advanced nano-bubble sparging system designed to significantly improve gas-liquid mass transfer. By generating extremely fine nano to micro-bubbles, it enhances mixing, reaction efficiency, and overall process performance across chemical and biological applications.

Nanobubble Formation & Interfacial Mass Transfer
The system uses vacuum-fused metal micronisers with cavitation and first principles of physics to disperse gas into a fine mist of nano-bubbles. This dramatically increases the gas-liquid interfacial area, enabling faster and more efficient reactions. Static or dynamic sparger configurations ensure effective operation without moving parts.
Gas Utilisation, Mass Transfer & Reaction Intensification
Generates nano to micro-bubbles for superior gas dispersion
Up to 10,000x increase in mass transfer surface area
No moving parts for reliable and low-maintenance operation
Vacuum-fused sintered construction for durability and efficiency
Flexible design from single element to multi-element systems
Sparging, Gas–Liquid Reaction & Bioprocess Intensification
Chemical & Process Industries
- Gas-liquid reactions with enhanced efficiency
- Oxidation and reduction processes
Water & Wastewater Treatment
- Dissolved oxygen enhancement
- Stripping of unwanted gases
Biotech & Fermentation
- Improved aeration in bioreactors
- Enhanced biological activity and yield
Energy & Environmental
- Gas dispersion in process streams
- Efficiency improvement in mass transfer-driven operations
Engineering Considerations
By moving-parts-free design, NANOPOREX-S delivers a step-change in gas-liquid mass transfer wherever reaction rate is limited by how much gas actually dissolves.
Documentation
Technical brochure
Tell us where to send it and we’ll email the PDF once the request is approved.
- NANOPOREX: Nano-Bubbles improve process efficiencyRequest PDF
Every process stream has a different separation signature.
Share your feed characteristics and operating constraints. Our engineers will evaluate the appropriate treatment pathway and integration strategy.
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