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Home MBR Membrane Bioreactor

Submerged MBR Membrane NM-RMBR-1520

Submerged MBR Membrane NM-RMBR-1520

Membrane bioreactor (MBR) is the combination of a membrane process like microfiltration or ultrafiltration with a suspended growth bioreactor, and is now widely used for big wastewater project of,   Municipal wastewater treatment (especially for reuse), Industrial wastewater (food & beverage, pharmaceutical, textile, chemical), Water reuse and recycling (e.g., cooling water, toilet flushing, irrigation),  Small-scale or decentralized treatment system.

Model: NM-RMBR-1520
Size (LxWxH, mm): 571 × 45 ×1535
Membrane area (m2): 20
Hollow fibers inside and outside diameter (mm): 1.0 / 2.0
Design Flux (L / h): 200-500
Working pressure (KPa): 10-50
Operating temperature (° C): 5-45
Work PH: 1-10
Hollow fibers: reinforced PVDF

 

   The specification of Submerged MBR Membrane NM-RMBR-1520

Type

NM-RMBR-1010

NM-RMBR-1520

Membrane

Nominal pore size (μm)

0.06 Micron

Material

PVDF, PET non-woven fabric and ABS resin

Membrane area per element (m2)

10 m2

20 m2

Membrane Element dimension

Height: 1100mm

Height: 1535mm

 Wide: 571mm

Wide: 571mm

 Thickness: 45mm

Thickness: 45mm

Filtration Method

Suction /Outside-in

Suction /Outside-in

Hollow fibers I /O diameter

1.0 /2.0 mm

 1.0 /2.0 mm

Design flow rate

100—300 Liters/ Hour

(Sewage design 150 L/H)

200—600 Liters/ Hour

(Sewage design 300 L/H)

Air diffuser

Fine bubble, tube type,

 EPDM rubber

Fine bubble, tube type EPDM rubber

Recommended usage

Smaller capacity plants (<200 m3/d)

Containerized package plants

wastewater reuse 

Municipal & industrial wastewater

Medium and large capacity plants (>200 m3/d) Municipal & industrial wastewater

 

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Futher technical data or information please do contact with us!

 

MBR Benifits

  • Lower energy costs, reinforced hollow fibers 
    * High quality effluent stable, use MBR that make sure industrial wastewater meet environmental discharge standards.
    * Higher Biomass Concentration: The membranes allow operation with much higher concentrations of microorganisms (6-8 g/L or MLSS 6000---8000mg/L), leading to better effluent quality and smaller footprint, Reduced footprint, usually 30-50% smaller than an equivalent conventional active sludge facility with secondary clarifiers and media tertiary filtration
    * High flow rate, easy cleaning and operation

 

Packaging

Paper carton pack, 5 pcs/carton, with 60kgs gross weight

 

Our Service

Hinada is the leading manufacturer and top brand MBR Membrane, we can offer quality products and 3 years gurantee and techincal support.

 

MBR Technology for Wastewater Reclamation and Treatment

 

In the MBR procedure, the system combines the activated sludge treatment with the membrane of the liquid-solid separation procedure. The membrane component uses low-pressure microfiltration & ultra-filtration membranes & eliminates the requirement for clarification & tertiary filtration. We offer the top quality MBR membrane that can be physically installed in the bioreactor tank or a separate tank. For most of the procedures submerging membranes in a bioreactor tank proves to offer the most efficient & cost-effective solution.

 

Our MBR membrane is used in the MBR process have very small pore sizes that are ranging from 0.04 – 0.4 microns. Almost complete separation of the suspended solids from mixed liquor can be achieved. It is the fact, along with the basic design results in dramatic reductions in the contaminants. The MBR process combines triggered sludge treatment with the membrane for liquid-solid separation. When MBR can attain almost complete separation of the suspended solids & dramatic reduction in the contaminants, it is prone to membrane fouling. Luckily, the recent advent of PTFE membranes & improved system designs has minimized need for membrane maintenance to prevent fouling.

 

Still, MBR is not without its drawbacks, the largest of which is membrane fouling-no surprise given the operating conditions to which the membranes are exposed. Fouling gradually reduces process efficiency causing cross-membrane pressures to increase or permeate flows to decrease depending whether the process is operated under constant pressure or constant flux conditions respectively. While automated cleaning regimens minimize the impact of membrane fouling, the cleaning and replacement must still be analyzed and factored into the overall analysis of MBR viability for any project.

 

 

As a leader in the development of industrial & municipal wastewater treatment systems, Hinada has the technical expertise to design & build wastewater & sewage treatment facilities for every industry. Beyond the wastewater, our team focuses on refining & expanding the water & wastewater treatment methods we presently employ thus, we can meet the most difficult challenges head-on with our top-notch innovation.

 

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