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MBBR Systems

MBBR (Moving Bed Biofilm Reactor) is a modern solution that provides high-efficiency wastewater treatment with moving bed biofilm technology. Additionally, its compact structure offers an economical alternative in facilities with space constraints.

MBBR (Moving Bed Biofilm Reactor) is a modern solution that provides high-efficiency wastewater treatment with moving bed biofilm technology. Additionally, its compact structure offers an economical alternative in facilities with space constraints.

What are MBBR Systems?

MBBR systems (Moving Bed Biofilm Reactor) are a modern method that combines biological processes with carrier media technology in wastewater treatment. MBBR systems offer a more compact and efficient solution compared to activated sludge technology.

In this system, floating carrier media made of HDPE material is used. Microorganisms attach to the surface of the media as biofilm and break down pollutants. Additionally, the moving media structure ensures continuous cleaning. MBBR systems stand out with high treatment efficiency.

As a result, the treatment of organic matter, nitrogen, and phosphorus can be achieved in a single system. MBBR systems are an ideal solution, especially for facilities with space constraints. Therefore, MBBR systems are successfully used in industrial and municipal applications. Moreover, existing facilities can be easily converted to MBBR systems.

What are MBBR Systems?
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Biofilm Surface

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BOD Removal

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Technical Specifications

  • Media Material: HDPE (High-Density Polyethylene)
  • Surface Area: 500 - 900 m²/m³ active biofilm surface
  • Filling Ratio: %30 - 70 adjustable according to reactor volume
  • BOD Output: <20 mg/L target value
  • TSS Output: <30 mg/L suspended solids
  • Nitrogen Removal: Nitrification and denitrification
  • Automation: PLC and SCADA fully automatic control
  • Capacity: 100 - 50,000 m³/day project-based

Application Areas

  • Municipal Wastewater Treatment Facilities: Urban treatment systems
  • Industrial Wastewater: Food, paper, chemical industries
  • Existing Facility Revision: Capacity increase projects
  • Dairy and Cheese: High organic load wastewater
  • Beer and Beverage Industry: Fermentation waste
  • Pulp and Paper Mills: Cellulose processing wastewater
  • Textile Industry: Dyeing and finishing wastewater
  • Oil Refineries: Waste containing hydrocarbons

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In the MBBR system, wastewater first passes through screens and grit chambers during the pre-treatment stage. In addition, large particles are removed. It is then directed to the biofilm reactor.

Inside the reactor, floating HDPE carrier media are present. Microorganisms adhere to the surface of these media as biofilm and break down organic pollutants in the wastewater. Thus, a continuously active biological process is ensured.

The aeration system keeps the media in motion and provides oxygen. As a result, the biofilm continuously renews itself. In the final sedimentation section, the treated water is separated from the biological mass. It can be evaluated together with MBR bioreactor systems.

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Advantages of the MBBR System

Dual Treatment Efficiency Organic matter and nitrogen-phosphorus treatment are carried out in a single system.
Compact Design Requires 50% less space compared to classical systems, making it ideal for urban areas.
Minimum Maintenance The biofilm continuously renews itself thanks to the moving media.
Stable Performance It provides stable treatment efficiency even under variable loads.
Flexible Expansion It can be easily expanded by adding additional media for capacity increase.
Low Energy Low energy consumption with an optimized aeration system.

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Request a Quote for MBBR System

Contact our expert team for a customized MBBR solution for your project. We offer free site assessment and feasibility support.

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MBBR Treatment Process

The 6-stage process we apply in MBBR (Moving Bed Biofilm Reactor) systems. You can click on each stage to access technical details.

1
1. Introduction & Bar Screen
Raw wastewater is taken into the system, and coarse solids (plastic, fibrous waste, stones) are separated by the screen. Pump protected.
2
2. Equalization Tank
Flow and organic load fluctuations are balanced. Instant peaks do not stress the MBBR biofilm.
3
3. Anoxic MBBR
Denitrification for nitrogenous compounds (NO₃⁻). Mixer + carrier beds, anaerobic biofilm grows.
4
4. Aerobic MBBR
The main treatment — biofilm on carriers (K1/K3) removes BOD/COD, NH₄⁺ undergoes nitrification. Diffuser aeration.
5
5. Sedimentation
The biofilm and suspended solids are separated using a lamella or conical settler. The clear filtrate is discharged from the supernatant.
6
6. Disinfection & Exit
Pathogens are eliminated with UV or chlorine dosage. The effluent meets discharge limits or is reused in irrigation.

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Frequently Asked Questions

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No, maintenance requirements are minimal. The moving media allows biofilm to continuously renew itself. Also no sludge recirculation is required like in activated sludge systems.

Yes, existing biological treatment plants can be easily converted by adding carrier media. Capacity can be increased by up to 50%.

MBBR uses fixed biofilm method, while MBR uses membrane filtration. MBBR has lower investment cost, MBR provides higher treatment quality.

MBBR systems are successfully used in municipal, food, beverage, paper, textile, chemical, petrochemical and mining sectors.

HDPE carrier media has a 15-20 year lifespan. Provides active performance for years under proper operating conditions.

Capacity can be easily increased thanks to modular structure. By adding media or new reactors, capacity can be doubled or tripled.

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