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MBBR Media
Moving Bed Biofilm Reactor (MBBR)
The moving bed biofilm reactor (MBBR) system has brought innovative changes to the field of biological wastewater treatment. By adopting Aquasust's carefully designed MBBR system, relevant facilities can not only achieve optimized savings in costs, energy, and space but also significantly enhance overall operational efficiency.
Why choose Aquasust's MBBR system and MBBR media?
Its full-process design gives the MBBR system unique advantages. Aquasust's engineers have always been committed to minimizing the following key factors:
Energy and operating costs: The MBBR packing used in Aquasust's MBBR system has excellent energy efficiency, which can effectively reduce operating costs.
Control difficulty: Since the MBBR system adopts a biological treatment process, most of the treatment work is completed by microorganisms attached to the MBBR media, so the system requires less attention and intervention from operators, and the operation process is more straightforward.
Footprint: The MBBR packing produced by Aquasust's unique formula for the MBBR system provides a huge surface area for microbial growth. The increase in microbial biomass enables the system to have stronger processing capacity in a relatively small footprint.
In addition, Aquasust's MBBR system also has significant advantages in the following aspects:
Treatment efficiency: Compared with other types of wastewater treatment systems, the MBBR system can achieve higher treatment efficiency with lower space and budget requirements.
Hydraulic capacity: The efficient MBBR media used in Aquasust's MBBR system can treat more water volume per unit time, thereby effectively improving the overall treatment efficiency.
Volumetric efficiency: Since the bacteria attached to the MBBR media undertake most of the work in the treatment process, the components in the MBBR system can better maintain good conditions, thereby achieving optimization of the water volume flowing through the water pump.
Process life: The biofilm carriers carrying bacteria on the MBBR media in the MBBR system have a long expected life, which also extends the process life of the system.
Aquasust's MBBR system achieves a dual improvement in performance and cost-effectiveness through intelligent design principles and unique high-efficiency MBBR media, providing a more competitive solution for the wastewater treatment field.
Aquasust MBBR Media Specification
Mbbr Media(Type)
|
Diameter * Height(mm)
|
Surface Area(m2 / m3) |
Inside Void Size (mm) | Number of units per m3 |
AS-MBBR 04
|
11 * 7
|
>900 |
5-6 | 940K |
AS-MBBR 05 | >1000 | 980K | ||
AS-MBBR 06 | 16*10 | >800 | 7-8 | 260K |
AS-MBBR 08 | 10 * 5 | >3500 | 15.4M | |
AS-MBBR 19 | 25 * 12 | >650 | 118K | |
AS-MBBR 37 | >800 | 5-6 | ||
AS-MBBR 38 | 25 * 10 | |||
AS-MBBR 40 | 15 * 15 | >900 | Unique | 230K |
AS-MBBR 61 | 25 * 4 | >1250 | 260K | |
AS-MBBR 64 | >1200 | |||
AS-MBBR 78 | >1600 |
Aquasust MBBR Media :Choose The Right Product For You
AS-MBBR09SQ
Low sludge output: The sludge produced has the characteristics of low sludge volume index, which optimizes sludge separation and treatment. Compared with traditional sludge, the sedimentation speed is faster, which can significantly reduce the time and cost of sludge treatment and reduce the pressure of sludge disposal from the source.
Self-regulating biofilm: The self-regulating biofilm technology equipped in the system can adjust the biological reaction mechanism in real time according to the changes in sewage load. At the same time, this technology can effectively prevent the blockage of treatment equipment, reduce the frequency of equipment maintenance, and ensure the long-term stable operation of the system.
Multi-pollutant removal, significantly improved removal rate: In terms of pollutant removal, the system performs excellently and has extremely high removal efficiency for biochemical oxygen demand (BOD), nitrogen and phosphorus. By optimizing the biological treatment process and accurately controlling the reaction conditions, the targeted degradation of various pollutants can be achieved, which helps sewage to meet discharge standards and effectively improve the environmental quality of receiving water bodies.

AS-MBBR19
Suitable for general sewage treatment: AS-MBBR19 filler is the most classic and widely used filler in MBBR process, suitable for municipal sewage and industrial wastewater treatment.
Moderate surface area (>650 m²/m³): It provides better biological attachment space, which is conducive to microbial growth and sewage treatment efficiency.
Strong fluidity: AS-MBBR19 filler has a larger pore size and is lightweight. So it is easy to flow in the reactor for higher efficiency of biofilm renewal.
Good impact load resistance: It can cope with water quality fluctuations, to be particularly suitable for occasions with large changes in sewage volume.
AS-MBBR37
Moderate surface area (>800 m²/m³): It has a larger biological attachment area. This makes it suitable for high - load sewage treatment, to improve the removal rate of ammonia nitrogen and organic matter.
Suitable for deep denitrification: Due to its large surface area, AS-MBBR37 filler is more suitable for nitrification processes and the ones that require efficient denitrification (such as BAF, AAO processes).
More complex structure: The geometric design of AS-MBBR37 filler is more complex than that of AS-MBBR04 filler. It enhances microbial attachment and suits better for low temperature or low load environments.
Suitable for high-load industrial wastewater: Due to its stronger biofilm carrying capacity, AS-MBBR37 filler performs well in the treatment of high-concentration organic wastewater like: food processing, aquaculture, and pharmaceuticals.
AS-MBBR78S
Larger surface area: AS-MBBR78S filler has a larger biological attachment surface, so it can support the attachment of more microorganisms. It is used mostly in high-concentration sewage, with improved treatment effect.
Suitable for deep denitrification: Due to its large surface area, AS-MBBR78S is particularly suitable for processes such as nitrification and denitrification. It is especially suitable for the ones that requires deep denitrification, like BAF and AAO.
Structural complexity: The geometric design of AS-MBBR78S filler is more complex, with enhanced attachment ability of microorganisms. It is particularly suitable for sewage treatment with heavy loads, to optimize the growth and reproduction of microbial populations.
Suitable for industrial wastewater treatment: AS-MBBR78S filler has a strong load-bearing capacity, which is particularly suitable for high-concentration industrial wastewater treatment. It can effectively improve treatment efficiency, and is widely used in industries such as petrochemicals, steel, and pharmaceuticals.
AS-MBBR92
Improved mass transfer efficiency:More holes can intensify the turbulence of water flow in the reactor, promote the full contact between sewage and biofilm, and facilitate the transfer of organic matter, ammonia nitrogen and other substrates from the water body to the surface of the biofilm. At the same time, it is conducive to the discharge of gases such as carbon dioxide and nitrogen produced by microbial metabolism, effectively improving the treatment efficiency of the reactor.
Promotion of microbial growth and attachment:The rich pore structure provides more attachment sites for microorganisms, increases the specific surface area of the biofilm, and is suitable for the growth and reproduction of various microorganisms such as aerobic bacteria, anaerobic bacteria, and facultative bacteria, forming a complex and diverse microbial community, and enhancing the removal ability of different pollutants.
Enhanced system stability:The 92 holes are evenly distributed, making the water flow more evenly distributed in the reactor, avoiding water short circuit or dead zone, reducing the impact of water quality and hydraulic shock, and improving the stability and reliability of MBBR system operation.
Optimization of hydraulic conditions:The reasonable number of holes and pore size design can regulate the hydraulic retention time and characteristics in the reactor, optimize the flow state of sewage, improve the treatment effect, reduce sludge loss, and ensure the stability of effluent water quality.

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MOQ:10 cubic meter
Unit Price:US $136-146
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