Engineering water systems for High-Rise Buildings, Data Centers, and Mission-Critical Facilities.
Discover Our SolutionsThe next generation of buildings must move from a linear water model toward a circular water cycle. ASKA engineers this complete cycle to reduce freshwater dependence and optimize resource efficiency.
Delivering reliable, consistent water quality through advanced modern membrane technology.
Engineering recycling systems to drastically reduce facility dependence on freshwater.
Designing compact, space-saving systems optimized for low energy consumption and integrated with real-time automation.
Engineered specifically for the demands of modern infrastructure.
We move beyond the traditional "Fresh Water ➔ Consumption ➔ Sewer" model by maximizing reuse in high-rise environments. We treat and generate reclaimed water for:
Goal: Reduce freshwater consumption while dramatically reducing wastewater discharge.
Poor water quality directly degrades heat exchanger efficiency, causing scaling, corrosion, and biological growth. ASKA delivers controlled, consistent water quality to protect your mission-critical cooling systems.
The core of our advanced water engineering portfolio.
Microfiltration: Removes suspended particles & microorganisms (Pretreatment).
Ultrafiltration: Removes turbidity, colloids & bacteria (RO Pretreatment).
Nanofiltration: Selective removal of hardness & organics (Softening).
Reverse Osmosis: High-performance removal of dissolved salts (High-Purity).
Membrane Bioreactor:
Biological treatment combined with membrane separation.
Application: Turning raw wastewater into highly refined reclaimed water.
Compact. Modular. Scalable.
Factory pre-assembly for faster installation, compact footprint to maximize valuable mechanical-room space, easier commissioning, and expandable capacity for growing facility demands.
Performance Based on Data.
Native PLC, HMI, SCADA, and BMS Integration. Real-time monitoring of membrane health (pressure, flow, conductivity), water recovery rates, and system efficiency to prevent fouling before deterioration occurs.
Built around engineering, not just equipment.
How can the facility reduce unnecessary water consumption at the source?
Which wastewater streams can economically and safely be recovered?
Where can treated water replace freshwater without compromising system reliability?
"The objective is the optimum balance between water saving, CAPEX, OPEX, reliability, and membrane life."