HIPS PE08 Biomass Balls Floating MBBR Carrier Media 5*10mm
HIPS BIOPORTS Safty Biomass Balls IFAS Technology 5*10mm floating media MBBR carrier
The MBBR system consists of an aeration tank (similar to an activated sludge tank) with special plastic carriers that provide a surface where a biofilm can grow. The carriers are made of a material with a density close to the density of water (1 g/cm3). The carriers will be mixed in the tank by the aeration system and thus will have good contact between the substrate in the influent wastewater and the biomass on the carriers.
MBBR media combines the benefits of both activated sludge process and the fixed film process. It is a continuous flow process which uses media/carriers that provide sites for the attachment of active bacteria in a suspended medium which can be used for wastewater treatment. The result is more treatment capacity within a given reactor volume, resulting in a smaller footprint compared to a conventional activated sludge process.
MBBR MEDIA PE08 technical data as below:
| Model | Size(mm) | Specific Surface Area(m2/m3) | Bio-film formation Duration (days) |
Nitrification Efficiency | Preferential Temperature (ºC) | Services life(years) | Number of unites per m3 |
| PE08 | Φ5×10 | >3500 | 5-15 | 400-1200 | <65 | ≥20 | >2,000,000 |
The application of small boss MBBR media:
Pulp and Paper industry
Food and Drink
Coke and Steel Mill
Sewage Treatment Plant
Wastewater Treatment
Water Treatment
Wastewater Treatment Plant
Sewage Treatment
SBR Sludge Process
RAS
.......
How the small boss MBBR media works:
The MBBR process utilizes floating plastic carriers (media) within the aeration tank to increase the amount of microorganisms available to treat the wastewater. The microorganisms consume organic material. The media provides increased surface area for the biological microorganisms to attach to and grow in the aeration tanks. The increased surface area reduces the footprint of the tanks required to treat the wastewater. The media is continuously agitated by bubbles from the aeration system that adds oxygen at the bottom of the first compartment of the aeration tank. The microorganisms consume organic material. When compared to conventional secondary treatment it provides superior efficiency and value.
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