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Supply of 250 m³/hr for River ultrafiltration filtration system

Projecr Name: Supply of 250 m³/hr for River ultrafiltration filtration system 

Location: Russia

Capacity: 250 m³/hr

Core Process: Ultrafiltration Membrane Modules

Key Challenges Solved: Rapid deployment, automatic operation, ensured water supply safety

This project involved the supply and commissioning of a high-capacity ultrafiltration system designed to treat river water for municipal use in Russia. The system was engineered to deliver reliable, high-quality filtration under demanding operational conditions, addressing critical needs for both speed of implementation and long-term supply security.

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Technical Solution

The core of the system is built around advanced Ultrafiltration (UF) Membrane Modules, which provide a physical barrier to effectively remove suspended solids, bacteria, viruses, and other microorganisms. The skid-mounted, modular design allowed for streamlined logistics and quick integration into existing water treatment infrastructure. The system operates with fully automated controls, including real-time monitoring, backwashing, and chemical cleaning cycles, ensuring consistent performance with minimal manual intervention.

Overcoming Key Challenges

● Rapid Deployment: Pre-assembled and factory-tested modules enabled swift transportation, installation, and commissioning, significantly reducing project lead time.

● Automatic Operation: With an intelligent PLC+HMI control system, the plant operates continuously and adaptively, featuring remote monitoring for performance optimization and prompt fault detection.

● Ensured Water Supply Safety: The UF membranes provide a consistent and reliable physical barrier, producing water that meets stringent quality standards and reducing dependency on chemical treatments, thereby enhancing the safety and sustainability of the water supply.


This project highlights the effectiveness of ultrafiltration technology in providing scalable, automated, and secure water treatment solutions, particularly in regions where rapid deployment and operational reliability are essential.

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