Mbbr Biofilm Reactor Carrier

Mbbr Biofilm Reactor Carrier
Details:
Type:MBBR 64
Size: Φ25*4 mm
Hole: 64 rooms
Surface Area: more than 1200m2/m3
Porosity: 85%
Densilty: 0.96-0.98g/cm3
Packing Numbers:>21000pcs/m3
Material: HDPE
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Description
Technical Parameters

Mbbr Biofilm Reactor Carrier

Introduce:


Mbbr biofilm reactor carriers / mbbr media The optimal matrix and oxygen supply for biofilms is achieved in layers up to 0.5 mm in thickness/depth. Therefore, the research and development task that needs to be accomplished in the mbbr wastewater treatment process is to create a surface that allows biofilm growth with a maximum thickness of up to 0.5 mm to ensure proper diffusion. If a biofilm is built on a uniform, flat or smooth surface, it tends to be washed away rapidly in an uncontrolled manner or grows into a thick and uncontrolled biofilm containing inactive biomass in the lower layer. Neither of these scenarios will provide any significant benefit. The task of the AquaSust mbbr system is on the one hand to protect the active biomass up to a layer thickness of about 0.5 mm (preferably in line with the optimal diffusion process) and on the other hand to adhere to the above mentioned layer thickness; avoiding overgrowth and excessive layer thickness. Therefore, by using the mbbr carrier configuration, it is necessary to try to create opportunities to shear off/remove excess sludge and to keep the biofilm thickness no more than 0.5 mm.

 

Mbbr:


mbbr wastewater treatment meaning:The sludge concentration in the reactor is relatively high, and the sludge concentration is 5-10 times higher than the normal activated sludge concentration, up to 30-40 g/L.  AquaSust mbbr advantages  can improve the efficiency of organic matter treatment, and the resistance to shock loading is very strong. For activated biofilm, the thickness of the carrier disc is crucial. All carriers on the market now, whether they are hollow body carriers, tubular carriers, spiral carriers or spongy carrier structures, are not enough to meet this requirement. And we can achieve and deal with this problem very well.

 

 

 

 

 

 

 

 

 

1.MBBR-SBR SLUDGE PROCESS

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2. ANAEROBIC-ANOXIC-OXIC PROCESS

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3.OXIDATION DITCH-MBBR PROCESS

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