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Moving Bed Biofilm Reactor (MBBR) technology. Moving Bed Biofilm Reactor (MBBR) processes improve reliability, simplify operation, and require less space than traditional waste water treatment systems. MBBR technology employs thousands of polyethylene biofilm carriers operating in mixed motion within an aerated waste water treatment basin. Each individual bio carrier increases productivity through providing protected surface area to support the growth of heterotrophic and autotrophic bacteria within its cells. It is this high-density population of bacteria that achieves high-rate biodegradation within the system, while also offering process reliability and ease of operation.
This technology provides cost-effective treatment with minimal maintenance since MBBR processes self-maintain an optimum level of productive biofilm. Additionally, the bio film attached to the mobile bio carriers within the system automatically responds to load fluctuations.
Process Benefits Compact Design
A fraction of the size of conventional systems Expandable
Capacity can be easily upgraded by simply increasing the fill fraction of biofilm carriers
Single Pass Process
No return activated sludge stream required
Load Responsive
Actively sloughed biofilm automatically responds to load fluctuations
Minimal Maintenance
No F/M ratios or MLSS levels to maintain
MBBR processes are an excellent solution for common wastewater applications including:
Moving Bed Bio film Reactor systems deliver a flexible, cost-effective, and easy-to-operate means to address current wastewater requirements and the expandability to meet future loads or more stringent discharge requirements within a compact design.
Available in Black and White or Multi Colour
This technology provides cost-effective treatment with minimal maintenance since MBBR processes self-maintain an optimum level of productive biofilm. Additionally, the bio film attached to the mobile bio carriers within the system automatically responds to load fluctuations.
Process Benefits Compact Design
A fraction of the size of conventional systems Expandable
Capacity can be easily upgraded by simply increasing the fill fraction of biofilm carriers
Single Pass Process
No return activated sludge stream required
Load Responsive
Actively sloughed biofilm automatically responds to load fluctuations
Minimal Maintenance
No F/M ratios or MLSS levels to maintain
MBBR processes are an excellent solution for common wastewater applications including:
Moving Bed Bio film Reactor systems deliver a flexible, cost-effective, and easy-to-operate means to address current wastewater requirements and the expandability to meet future loads or more stringent discharge requirements within a compact design.
Specification | |
---|---|
Size | 20mm x 25mm & 16mm x 22mm |
Type of Media | Fluidized Random Bio Media |
Colour | Black |
Media Height | 20mm/16mm |
Media Diameter | 25mm/22mm |
MOC of Media | APP |
Specific Density | 0.90-0.97 gms/cm3 |
Make | AMIKON |
: A fraction of the size of conventional systems.
: Capacity can be easily upgraded by simply increasing the fill fraction of biofilm carriers.
: No return activated sludge stream required.
: Actively sloughed biofilm automatically responds to load fluctuations.
:No F/M ratios or MLSS levels to maintain.
MODEL | APP 25 |
EFFECTIVE SPECIFIC SURFACE AREA OF MEDIA | 400 M2/M3 |
COLOUR | BLACK |
MEDIA HEIGHT | 16 MM |
MEDIA DIAMETER | 22 MM |
TYPE OF MEDIA | FLUIDIZED BIO MEDIA |
MOC OF MEDIA | VIRGIN PP UV STABILIZED |
STRUCTURE | CYLINDRICAL WITH EXTERNAL FINS |
PSA/TSA RATIO (%) | 75 |
SPECIFIC WEGIHT (Kg/M2) SURFACE AREA | 0.37 |
SPECIFIC GRAVITY | 0.90 – 0.95 gms/cm3 |
MAX CONTINUOUS OPERATING TEMPERATURE | 800C |
VOIDAGE | > 98% |
DENSITY (GM/CC) | 0.93 |
MEDIA FILL RATE RANGE, % FILL OF V | 25 – 55 |
Minimum Order Quantity | 10 Cubic Meter |
Usage/Application | SEWAGE TREATMENT |
Model Type | Virgin K1 |
Capacity | 1500 cubic meter |
Filter Medium Material | HDPE |
Color | White |
Make | AMIKON |
Size | 15 MM x 25 MM |
Material | PP |
Model/Type | PP 22V |
Installation Service | Yes |
MBBR technology employs thousands of polyethylene biofilm carriers operating in mixed motion within an aerated waste water treatment basin. Each individual bio carrier increases productivity through providing protected surface area to support the growth of heterotrophic and autotrophic bacteria within its cells. It is this high-density population of bacteria that achieves high-rate biodegradation within the system, while also offering process reliability and ease of operation.
This technology provides cost-effective treatment with minimal maintenance since MBBR processes self-maintain an optimum level of productive biofilm. Additionally, the bio film attached to the mobile bio carriers within the system automatically responds to load fluctuations.