The MBR Plant is an advanced wastewater treatment solution designed to deliver high performance and reliability across a wide range of applications. Featuring capacities that vary from as low as 10 M3/day up to 10,000 M3/day, this system is highly adaptable to meet the demands of small communities, industrial facilities, and large urban centers alike. Its design integrates the latest technologies to ensure superior treatment efficiency while maintaining a compact footprint, making it an ideal choice for locations where space is limited.
At the heart of the MBR Plant is the Integrated Membrane Bioreactor Unit, a cutting-edge component that combines biological treatment with membrane filtration processes. This integration results in a High Efficiency MBR System capable of achieving exceptional levels of contaminant removal, including suspended solids, organic matter, and pathogens. The membrane bioreactor technology not only enhances treatment performance but also reduces sludge production, lowering operational costs and environmental impact.
One of the key advantages of the MBR Plant is its compact design, which occupies significantly less space compared to conventional wastewater treatment plants. This smaller footprint is achieved through the seamless integration of the A2O (Anaerobic-Anoxic-Oxic) process with membrane bioreactor technology, as well as options combining A2O with MBBR (Moving Bed Biofilm Reactor) plus MBR. These advanced processing configurations optimize biological nutrient removal and improve overall system robustness, ensuring compliance with stringent discharge standards.
The operational control of the MBR Plant is fully automated, utilizing an electric auto control system powered by Siemens PLC technology. This intelligent control system enables real-time monitoring and adjustment of process parameters, enhancing operational stability and efficiency. Operators benefit from simplified management, reduced manual intervention, and improved system reliability, which collectively contribute to lower maintenance requirements and operational costs.
Designed for versatility, the MBR Plant can be customized to suit a variety of wastewater treatment needs. Its modular construction allows for easy scalability and integration into existing infrastructure, making upgrades and expansions straightforward and cost-effective. Whether addressing municipal sewage, industrial effluents, or decentralized wastewater treatment projects, the Integrated Membrane Bioreactor Unit ensures consistent, high-quality effluent that meets environmental regulations.
In summary, the MBR Plant represents a state-of-the-art solution in wastewater treatment technology. Its combination of a compact footprint, flexible capacity range, and sophisticated processing methods such as A2O+MBR and A2O+MBBR+MBR positions it as a leader in the field. The inclusion of the High Efficiency MBR System and the Integrated Membrane Bioreactor Unit underscores its commitment to delivering superior treatment performance with operational ease. For those seeking an effective, space-saving, and technologically advanced wastewater treatment system, the MBR Plant is an outstanding choice that meets the highest standards of efficiency and sustainability.
| Material | Carbon Steel, Container |
| Control | Electric Auto Control (PLC Siemens) |
| Processing | A2O+MBR, A2O+MBBR+MBR |
| Footprint | Compact Design, Smaller Than Conventional Plants |
| Removal Efficiency | BOD > 95%, TSS > 99%, Pathogens > 99% |
| Membrane Material | PVDF (Polyvinylidene Fluoride) |
| Capacity | Varies (e.g., 10 M3/day To 10,000 M3/day) |
| Application | Wastewater Treatment |
The High Efficiency MBR System is designed to meet the growing demand for advanced wastewater treatment solutions in a variety of application occasions and scenarios. Thanks to its compact design, the MBR Plant occupies a much smaller footprint compared to conventional wastewater treatment plants, making it ideal for locations where space is limited. This feature allows it to be installed in urban areas, commercial complexes, industrial parks, and even remote sites where traditional large-scale plants are not feasible.
The capacity of the Wastewater Treatment Membrane Plant is highly flexible, ranging from 10 M3/day to 10,000 M3/day, which makes it suitable for diverse usage needs. Small-scale communities, residential developments, hotels, and hospitals can benefit from the smaller capacity units, while larger industrial facilities and municipal wastewater treatment projects can utilize the higher capacity configurations. This scalability ensures that the MBR System can be tailored to specific project requirements without compromising performance.
The processing technology of the Integrated Membrane Bioreactor Unit incorporates advanced biological treatment methods such as A2O+MBR and A2O+MBBR+MBR. These combinations enhance nutrient removal and organic matter breakdown, ensuring superior water quality. The system’s electric auto control, supported by PLC Siemens technology, enables precise and automated operation, reducing the need for manual intervention and increasing operational reliability. This makes the plant suitable for scenarios requiring unattended or remote operation, such as off-grid industrial sites or decentralized wastewater management systems.
In terms of removal efficiency, the MBR Plant excels with BOD removal rates greater than 95%, TSS removal exceeding 99%, and pathogen elimination above 99%. This high level of purification makes it ideal for applications demanding stringent discharge standards, including the treatment of municipal sewage, industrial effluent, and reclaimed water for irrigation or reuse. Additionally, the system’s robust pathogen removal capability supports applications in healthcare facilities and food processing industries where hygiene is critical.
Overall, the High Efficiency MBR System’s compact footprint, flexible capacity, advanced processing technologies, and automated control make it an excellent choice for a wide range of wastewater treatment occasions and scenarios. Whether for urban environments, industrial sectors, or decentralized treatment needs, this Wastewater Treatment Membrane Plant offers a reliable and efficient solution to meet modern water management challenges.