Method of Continuous and Quasi Continuous Forward Osmosis (FO) Desalination
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- Method of Continuous and Quasi Continuous Forward Osmosis (FO) Desalination
Technology Overview
This invention uses a semi-interpenetrating (semi-IPN) hydrogel draw solute that combines a thermally responsive polymer and hydrophilic polymer. By switching between hydrophilic and hydrophobic states, the draw solute enables water purification from feed solutions at low cost and low energy.
CATEGORY
TECHNOLOGY READINESS LEVEL (TRL)
Semi-IPN Hydrogel Draw Solute for Forward Osmosis
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Low-Energy Water Purification:
Enhances forward osmosis efficiency. Reduces separation and recovery energy costs. Cost-effective water treatment solution
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Thermally Switchable Hydrogel:
Switches between hydrophilic and hydrophobic states. Enables easy water release during heating. Self-regenerates during dewatering cycle
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Minimal Reverse Diffusion:
Near-zero draw solute leakage. Improves process stability. Enhances purification performance.
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Versatile Water Treatment:
Suitable for seawater, brine, and industrial wastewater. Adaptable to different feed conditions and applicable across multiple industries
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Industry-Friendly Design:
Supports pharmaceuticals, food processing, and manufacturing. Efficient and scalable FO integration
Maritime Use Cases

This forward osmosis-based water purification technology could be integrated into on-board water treatment systems for maritime vessels, enabling the production of clean, potable water from seawater or brackish water sources, reducing the need for freshwater transportation or storage.

The technology could also be applied to develop decentralized water treatment solutions for remote or offshore maritime facilities, improving access to clean water and reducing the environmental impact of maritime operations.



