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Our Technology
We have engineered a system that uses sunlight to heat seawater, producing steam that powers a turbine to generate electricity. That same steam is then condensed into clean, pre-treated drinking water. The leftover brine is then crystallised into solar salt, producing no waste and requiring no brine return line.
Our Three-Stage Engineering Process
Marine-Safe Intake
Integrated Renewable Power
Zero-Liquid-Discharge
Seawater is drawn through low-velocity, marine-safe intake systems engineered to protect local aquatic organisms and preserve sensitive coastal ecosystems.
Co-located solar and wind arrays generate continuous, high-voltage electricity to drive the high-pressure reverse osmosis membranes without carbon emissions.
Advanced crystallization systems convert the remaining high-salinity brine into commercial-grade dry industrial salt, eliminating marine discharge entirely.

Engineered for Giga-Scale Output
Designed for continuous municipal and heavy industrial operations, our systems deliver unprecedented efficiency metrics.
Power Capacity
Water Volume
Salt Recovery
Co-located renewable arrays deliver up to fifty megawatts of dedicated clean electricity directly to the purification grid.
High-pressure reverse osmosis membranes generate up to one hundred giga-liters of pure water per day.
Thermal crystallizers recover pure, commercial-grade dry sodium chloride, completely eliminating liquid brine waste.
Evaluate Your Facility Viability
Request a comprehensive engineering feasibility study for your coastal municipal or industrial infrastructure project.
Sol Desal Australia
Zero-liquid-discharge desalination powered by integrated coastal renewables.
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Global Headquarters: Brisbane, Australia
© 2026 Sol DeSal Australia - Engineered for continuous municipal and industrial operations.
COASTAL BASELOAD INFRASTRUCTURE
