Product Overview
System description The MBBR bio film technology is based on specially designed plastic bio film carriers or Bio carriers that are suspended and in continuous movement within a tank or reactor of specified volume. The design of associated aerators, grids, sieves, spray nozzles and other integral parts to the reactor is also of great importance in making up the system as a whole. The industrial and municipal wastewater is lead to the MBBR Treatment reactor where bio film, growing within the internal structures of the bio carrier s, degrade the pollutants. These pollutants that need to be removed in order to treat the wastewater are food or substrate for growth of the bio film. The bio carrier design is critical due to requirements for good mass transfer of oxygen to the microorganisms and there is a continuous R&D in the area of the MBBR bio film technology. Excess bio film sloughs off the bio carrier in a natural way. Benefits a c Highly compact upgrade solutions a c Increased operational stability through capacity to absorb sudden peak loadings a c Low energy consumption a c Negligible head loss a c Virtually maintenance free - self-cleaning technology a c Eliminates the need for solids separation and RAS for performance a c Robust bio film a c Flexible reactor design a c Easy upgrade of existing plants a c Easy to operate and control a c Low load on particle separation stage
System description The MBBR bio film technology is based on specially designed plastic bio film carriers or Bio carriers that are suspended and in continuous movement within a tank or reactor of specified volume. The design of associated aerators, grids, sieves, spray nozzles and other integral parts to the reactor is also of great importance in making up the system as a whole. The industrial and municipal wastewater is lead to the MBBR Treatment reactor where bio film, growing within the internal structures of the bio carrier s, degrade the pollutants. These pollutants that need to be removed in order to treat the wastewater are food or substrate for growth of the bio film. The bio carrier design is critical due to requirements for good mass transfer of oxygen to the microorganisms and there is a continuous R&D in the area of the MBBR bio film technology. Excess bio film sloughs off the bio carrier in a natural way. Benefits a c Highly compact upgrade solutions a c Increased operational stability through capacity to absorb sudden peak loadings a c Low energy consumption a c Negligible head loss a c Virtually maintenance free - self-cleaning technology a c Eliminates the need for solids separation and RAS for performance a c Robust bio film a c Flexible reactor design a c Easy upgrade of existing plants a c Easy to operate and control a c Low load on particle separation stage