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Safi water reuse plant

Investments in the sustainability of water supply

The impact of population growth, water scarcity and climate change on water availability is substantial. Reused water is the most sustainable water source, consuming four times less energy compared to desalinated sea water. The Safi Water Recycling Plant is a unique facility in Ajman, UAE where up to 13,000 cubic meters per day of treated wastewater is polished to very high-quality standards.

Reverse osmosis with control panel at Safi water reuse plant ©Endress+Hauser

Reverse osmosis with Memograph M data manager to monitor critical process parameters. For more information about the Safi water reuse plant watch this video.

Our solution

  • Reliable, accurate and robust electromagnetic flow meters for process monitoring and billing applications

  • Inline monitoring of critical quality parameters at both the inlet and outlet of the reverse osmosis membranes

  • Ensure membrane cleaning efficiency

  • Reduced total cost of ownership (TCO)

  • Local support and service expertise

Habib ur Rahman

“The collaboration with Endress+Hauser has paved the way to a more sustainable water future. Easy asset management for maximized sensor lifetime and local expertise have contributed to a lower TCO.”

Habib ur Rahman, Plant manager
Safi, United Arab Emirates (UAE)

Customer challenge

As a responsible operator, Safi continuously monitors various parameters to ensure that the permeate water quality always meets the stringent requirements set by the End users industries. Water reuse often involves advanced treatment processes such as membrane filtration and reverse osmosis. Managing these complex treatment steps requires manpower, the availability of skilled personnel and substantial investments.

Realization

Ultrafiltration and reverse osmosis membranes are prone to fouling and scaling which occurs when dissolved and undissolved particles and minerals as well as microorganisms accumulate on the membrane surfaces, reducing permeability and energy efficiency. Optimal monitoring of critical parameters ensures initiating timely chemical cleaning and backwashing cycles which are critical to prevent flux degradation and prolong membrane lifespan and its replacement.