MBBR Media PP Fiber Suspension Filter Media Carrier

MBBR Media PP Fiber Suspension Filter Media Carrier
Details:
Type:MBBR64
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 Media PP Fiber Suspension Filter Media Carrier

Product describe:

With MBBR Media PP Fiber Suspension Filter Media Carrier working principle, it provides benefits all together on the attached and

suspended growth systems. MBBR media manufacturers ensures to offer and advanced first class wastewater treatment technology at expected high efficiency. "

Getting the mbbr media full form, you are acquiring a minimal cost in investing it, during operation, its maintenance, and including its replacement when possible. The complete mbbr media material provides massively reliable and vigorously sturdy operation procedure." The excellence in performance of this MBBR media will leave other industrial expertise of the same product line a peculiar search for advancement on how to make it up to top with the end product.

MBBR media types vary in size, structural strength and surface area. These factors lead them to have different practical applications. For example our bioChip B-3500 is great for landfill leachate. Our bioFas B-700 media is also a popular choice as it has a lot of surface area, which reduces the tank size needed. supplied in 1 m3 super sacks and shipped on pallets for ease of transportation. The carriers can be loaded into basins and tanks via a fork truck or a crane.MBBR Media PP Fiber Suspension Filter Media Carrier

AquaSust MBBR:

The efficiency of the MBBR process is conditioned by operational conditions as the Filling Ratio (FR), and Dissolved Oxygen (DO). FR is the ratio between the volume occupied by the supports and the total volume of the reactor - VS/VR. This value can be changed and adapted to the desired conditions with an optimal range between 20 and 70% [4] Rusten et al. [5] used a MBBR pilot plant to treat dairy wastewater, reaching COD removal efficiencies above 85% for organic loads up to 500 g CQO/m3 h and a hydraulic retention time (HRT) of 7 h. A MBBR was also used to treat paper mill wastewater [6] with an organic matter removal efficiency of 98.7%. Vaidhegi [7] analyzed the same type of effluent and observed a maximum degradation when using 50% of FR in 8 h, pointing out that the filling ratio is an important factor because the organic removal depends on the biomass attached to the biocarriers. De Oliveira et al. [8] also studied pulp and paper mill wastewater in a MBBR pilot plant with 20 m3, an average hydraulic retention time (HRT) of 3.3 h and a FR of 10%, is possible to observe high levels of biomass adherence. Regarding urban wastewater, Calderón et al. [9], concluded that for FR 50% a more mature and better colonized biofilm on the carrier surface would be obtained.

system can be used as an IFAS system or as a MBBR system. It provides complete bioreactor mixing with enhanced oxygen transfer capabilities. MBBR biological System is ideal for plant upgrades, retrofits, or to supplement other wastewater treatment processes in industrial wastewater treatment applications. The flexibility and efficiency of the system also makes it a cost-effective solution to complement other treatment technologies such as Dissolved Air Flotation systems.MBBR Media PP Fiber Suspension Filter Media Carrier

 

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The MBBR Media Support Carrier System: MBBR processes use plastic media

support carriers similar to those shown in the figure below. As shown in that figure, the

carrier is typically designed to have a high surface area per unit volume, so that there is

a lot of surface area on which the microorganisms attach and grow. Media support

carriers like those shown in the figure are available from numerous vendors. Two

properties of the carrier are needed for the process design calculations to be described

and discussed in this course. Those properties are the specific surface area in m 2 /m 3

and the void ratio. The specific surface area of MBBR carriers is typically in the range

from 350 to 1200 m 2 /m 3 and the void ratio typically ranges from 60% to 90%. Design

values for these carrier properties should be obtained from the carrier manufacturer or

vendor.

 

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