Litree Membrane Bioreactor System for Cigarette Wastewater Reuse Project

Product Details
Customization: Available
Type: Ultrafiltration
Method: Physical Treatment

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  • Litree Membrane Bioreactor System for Cigarette Wastewater Reuse Project
  • Litree Membrane Bioreactor System for Cigarette Wastewater Reuse Project
  • Litree Membrane Bioreactor System for Cigarette Wastewater Reuse Project
  • Litree Membrane Bioreactor System for Cigarette Wastewater Reuse Project
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Basic Info.

Model NO.
GEMINI-S14
Brand Name
Litree
Membrane Material
Reinforced PVDF
Membrane Area
322sqm
Filtration Precision
0.02micron
Mbr System Type
Immersed Mbr System
Fiber ID/Od
1.0/2.0mm
pH Range
1~13
Max Suction Pressure
-60kpa
Application
Municipal Water Supply; Industrial Water Treatment
Transport Package
as Per Clients′ Request
Specification
1210× 805× 2010mm
Trademark
LITREE
Origin
Jiangsu, China (Mainland)
HS Code
8421219990
Production Capacity
500 Set/Sets Per Month

Product Description

Membrane Bioreactor System for Cigarette Wastewater Reuse Project
Curtain design MBR system membrane module for wastewater treatment and recycling

About LITREE:

LITREE company is biggest hollow fiber UF membrane manufacturer in China, we provide quality pressure vessel UF module, integrated UF purifying equipment, immersed membrane for MBR system, and we also is the first brand in Chinese residential UF filter market.

Advantages of MBR system:

MBR technics is a perfect integration by membrane separation technology and normal biological treatment. Instead of traditional secondary sedimentation tank, sand filter tank by capillary hollow fiber UF membrane, the effluent water quality of this system can match reclaimed water reuse or Reverse Osmosis input water standard. MBR system is especially suitable for high discharge standard water treatment plants and old plants' upgrades and transformation.

In wastewater treatment, MBR system has obvious advantages compared with other biological treatment methods:
1. High remove rate of contamination, stable effluent water quality, and dispense with disinfection;
2. Realized the separation of HRT (Hydraulic retention time) and SRT (sludge age time), simplify the system design and operation;
3. The mechanical cut-off of UF membrane can avoid the microorganism spillage, maintain high sludge concentration, effectively increased the volume loading, reduce the sludge loading and floor space;
4. Long SRT in MBR system is helpful to the long generation period microorganisms growth, in favor of biodegradation on difficult degradation organic matter.
5. The longer SRT also make the MBR system has the effect same as aerobic sigestion pool, and reduce the sludge volume observably and save the process cost;
6. MBR technics has well control on SRT in order to adapt with the growth of nitrobacteria, enhance the nitriability.
7. MBR system has compact structure, easy for integrate autocontrol and operation manage.

Applications of MBR Membrane :

Municipal water supply
Industrial water purification
Municipal waste water treatment
Industrial waste water treatment
Landfill leachate advanced treatment
Reclaimed water reuse
Pretreatment of RO system

Specification:
 
Model No.  GEMINI-U GEMINI-S GEMINI-E
Membrane Material Reinforced PVDF Reinforced PVDF Reinforced PVDF
Fiber ID/OD (mm) 1.0/2.0 1.0/2.0 1.0/2.0
Membrane Area (m 2 ) 31                        23                                      14                                     
Pore Size (μm) 0.02 0.02 0.02
System Structure Immersed Immersed Immersed
Filtration Model Outside-in Outside-in Outside-in
Max. Operation Pressure (-kPa) 60 60 60
Max. Temperature ( °C ) 40 40 40
pH Range 1~13 1~13 1~13
Dimension L×W×H (mm) 721×70×2122 721×70×1622 721×70×1082
Weight (dry) kg 16 13 9
 
  Cassette No.  Dimension(mm)
( L × W × H )
  Active membrane area(m 2 )
  GEMINI-E14   1210×805×1485  196
  GEMINI-S14   1210×805×2010  322
  GEMINI-U14   1210×805×2510  434
  GEMINI-E26   2110×805×1505  364
  GEMINI-S26   2110×805×2030  598
  GEMINI-U26   2110×805×2530  806
  GEMINI-S52   2100×1560×2520  1612



 
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