Our Mission
To harness science to unlock nature’s secrets to make the earth better for our children.
To harness science to unlock nature’s secrets to make the earth better for our children.
We will make better products inspired by nature, that will harness the Ocean’s great power. Our products are net-carbon neutral and will contribute to healing the planet.
We will make better products inspired by nature, that will harness the Ocean’s great power. Our products are net-carbon neutral and will contribute to healing the planet.
Our Vision
We believe that we can live in a world where all energy is clean, green and affordable.
We believe that we can live in a world where all energy is clean, green and affordable.
We aim to build that future by bringing innovation and science to to the forefront - combining commercial practicality with sustainable practices.
We aim to build that future by bringing innovation and science to to the forefront - combining commercial practicality with sustainable practices.
Our Core Foundations
Our Core Foundations
Our Core Foundations
Our Core Foundations
Water technology company dedicated to advancing sustainable solutions for the desalination industry, with a core focus on Reverse Electrodialysis (R.E.D.).
Our technologies are designed to improve the efficiency of desalination processes through energy savings and smarter brine management, helping to move the industry closer to net-zero operations.
Net Zero Desalination
We help make desalination more cost-effective by reducing energy consumption and improving brine discharge management through integrated RED technology.
/01
/01
Resource Recovery from Brine
Our systems extract valuable minerals from brine discharge and brine pools, turning waste into resources.
/02
/02
Very Minimal Liquid Discharge/ZLD
These solutions manage reject brine and wastewater at the end of the desalination cycle, supporting stricter environmental compliance and reducing liquid waste.
/03
/03
Carbon Capture
Our ocean-based solution captures and sequesters CO₂ in a stable form through seabed deployment, contributing to long-term climate goals.
/04
/04
Net Zero Desalination
We help make desalination more cost-effective by reducing energy consumption and improving brine discharge management through integrated RED technology.
/01
/01
Resource Recovery from Brine
Our systems extract valuable minerals from brine discharge and brine pools, turning waste into resources.
/02
/02
Very Minimal Liquid Discharge/ZLD
These solutions manage reject brine and wastewater at the end of the desalination cycle, supporting stricter environmental compliance and reducing liquid waste.
/03
/03
Carbon Capture
Our ocean-based solution captures and sequesters CO₂ in a stable form through seabed deployment, contributing to long-term climate goals.
/04
/04
Net Zero Desalination
We help make desalination more cost-effective by reducing energy consumption and improving brine discharge management through integrated RED technology.
/01
/01
Resource Recovery from Brine
Our systems extract valuable minerals from brine discharge and brine pools, turning waste into resources.
/02
/02
Very Minimal Liquid Discharge/ZLD
These solutions manage reject brine and wastewater at the end of the desalination cycle, supporting stricter environmental compliance and reducing liquid waste.
/03
/03
Carbon Capture
Our ocean-based solution captures and sequesters CO₂ in a stable form through seabed deployment, contributing to long-term climate goals.
/04
/04
/01
Net Zero Desalination
We help make desalination more cost-effective by reducing energy consumption and improving brine discharge management through integrated RED technology.
/02
Resource Recovery from Brine
/03
Very Minimal Liquid Discharge/ZLD
/04
Carbon Capture
The Problem
The Problem
The Problem
The Problem
We Have A Serious Global Water Crisis.
people worldwide are living in countries experiencing high water stress.
people worldwide are living in countries experiencing high water stress.
people still lack basic drinking water services.
people still lack basic drinking water services.
children lose their lives due to unsafe water everyday.
children lose their lives due to unsafe water everyday.
of Earth's water is accessible freshwater only.
of Earth's water is accessible freshwater only.




Existing R.O System
Huge condensed water is damaging the environment.
Today’s Desalination System is not sustainable for the future.
Brine Production
Generate brine as a byproduct, and the disposal of concentrated brine is costly can pose environmental challenges.
High Energy Consumption
High energy requirements, contributing to increased operational costs and environmental impact.
Our Technology
Our Technology
Our Technology
Our Technology
Reverse Electrodialysis
Driving the future of Blue Energy through the salinity gradient power potential.




Energy is derived from salt concentration differences in fluids, like fresh and salt water.
Advanced Technology
RED is the leading salinity gradient technology, harvesting energy from seawater-freshwater salt differences.
High Energy Potential
SGP can generate a similar potential energy between seawater and freshwater to a 230-meter-high dam.
Global Estuary Potential
Estuaries around the world hold an estimated 30 TW of SGP, offering significant clean, emission-free renewable energy potential.
Growing Scale
As water use for energy production increases globally, SGP emerges as a substantial, environmentally friendly energy source.
Advanced Technology
RED is the leading salinity gradient technology, harvesting energy from seawater-freshwater salt differences.
High Energy Potential
SGP can generate a similar potential energy between seawater and freshwater to a 230-meter-high dam.
Global Estuary Potential
Estuaries around the world hold an estimated 30 TW of SGP, offering significant clean, emission-free renewable energy potential.
Growing Scale
As water use for energy production increases globally, SGP emerges as a substantial, environmentally friendly energy source.
Advanced Technology
RED is the leading salinity gradient technology, harvesting energy from seawater-freshwater salt differences.
High Energy Potential
SGP can generate a similar potential energy between seawater and freshwater to a 230-meter-high dam.
Global Estuary Potential
Estuaries around the world hold an estimated 30 TW of SGP, offering significant clean, emission-free renewable energy potential.
Growing Scale
As water use for energy production increases globally, SGP emerges as a substantial, environmentally friendly energy source.
Advanced Technology
RED is the leading salinity gradient technology, harvesting energy from seawater-freshwater salt differences.
High Energy Potential
SGP can generate a similar potential energy between seawater and freshwater to a 230-meter-high dam.
Global Estuary Potential
Estuaries around the world hold an estimated 30 TW of SGP, offering significant clean, emission-free renewable energy potential.
Growing Scale
As water use for energy production increases globally, SGP emerges as a substantial, environmentally friendly energy source.
The salinity gradient power potential between seawater and freshwater is similar to the potential energy of a 230 metre water dam.
The salinity gradient power potential between seawater and freshwater is similar to the potential energy of a 230 metre water dam.




Complete Circular Economy




RED-RO-RED System
Reduced Energy Consumption
30% lower average power consumption compared to standard R.O. process. Among the lowest power consumers in SWRO desalination plants.
Reduced CO2 Emissions
Potentially save 900,000 tons of carbon over 30 years, slashing emissions by over 0.5 kg CO2e/m3 compared to traditional methods.
No Brine Produced
The desalination process removes brine water, ensuring the discharged water retains the natural salinity of seawater without mixing.
Mineral Extraction [CCUS]
Maximising the seawater revenue and utilisation using magnesium carbonate extraction via brine leaching.
Reduced Energy Consumption
30% lower average power consumption compared to standard R.O. process. Among the lowest power consumers in SWRO desalination plants.
Reduced CO2 Emissions
Potentially save 900,000 tons of carbon over 30 years, slashing emissions by over 0.5 kg CO2e/m3 compared to traditional methods.
No Brine Produced
The desalination process removes brine water, ensuring the discharged water retains the natural salinity of seawater without mixing.
Mineral Extraction [CCUS]
Maximising the seawater revenue and utilisation using magnesium carbonate extraction via brine leaching.
Reduced Energy Consumption
30% lower average power consumption compared to standard R.O. process. Among the lowest power consumers in SWRO desalination plants.
Reduced CO2 Emissions
Potentially save 900,000 tons of carbon over 30 years, slashing emissions by over 0.5 kg CO2e/m3 compared to traditional methods.
No Brine Produced
The desalination process removes brine water, ensuring the discharged water retains the natural salinity of seawater without mixing.
Mineral Extraction [CCUS]
Maximising the seawater revenue and utilisation using magnesium carbonate extraction via brine leaching.
Reduced Energy Consumption
30% lower average power consumption compared to standard R.O. process. Among the lowest power consumers in SWRO desalination plants.
Reduced CO2 Emissions
Potentially save 900,000 tons of carbon over 30 years, slashing emissions by over 0.5 kg CO2e/m3 compared to traditional methods.
No Brine Produced
The desalination process removes brine water, ensuring the discharged water retains the natural salinity of seawater without mixing.
Mineral Extraction [CCUS]
Maximising the seawater revenue and utilisation using magnesium carbonate extraction via brine leaching.
Credentials
Credentials
Credentials
Credentials
Patents, Certifications, Memberships & PR
Discover the Impact of Our Solutions Through Our Partners' Experiences.


































