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MBR Biochemical System

MBR Biochemical System

  1. Introduction to the MBR Biochemical System

The MBR biochemical system is a new type of wastewater treatment technology that combines membrane separation technology with biological treatment. It mainly consists of three parts: pretreatment system, biochemical treatment system, and membrane separation system.

III. Composition of the MBR Biochemical System

Pretreatment system: Mainly used to remove large particles and suspended solids from the wastewater, creating conditions for subsequent biochemical treatment.

Biochemical treatment system: Through the biodegradation action of microorganisms, organic matter in the wastewater is transformed into harmless or low-toxic substances.

Membrane separation system: Using the selective permeability of membranes to retain microorganisms, suspended solids, and macromolecular organic substances in the wastewater, ensuring the effluent meets discharge or reuse standards.

 

 

 

 

Product parameter table

MBR membrane element parameter table

model

WTY-MBR-15

WTY-MBR-18

WTY-MBR-30

Effective membrane area

15m 2

18m 2

30m 2

Membrane material

Lined with reinforced PVDF

Membrane fiber outer diameter

2.2mm

2.05 mm

2.2mm

Nominal aperture

0.03 μm

Product water turbidity

0.5 NTU

pure water flux

100 L/m 2 ·h (TMP 20 kPa, 25)

Outer diameter size L×W×H

824×46×1100mm

872×46×1560mm

824×46×2200 mm

Shipping weight (dry weight)

8kg

8kg

12kg

Working weight (wet weight)

18kg

11kg

25kg

Maximum transmembrane pressure difference

60 kPa

Maximum backwash pressure

70 kPa

Backwash flux (LMH)

30-50

Operating temperature

5-40℃

pH range

2-10

Aeration intensity

60-120 (Nm2/hm2 projected area)

Chemical cleaning pH range

1-11

Maximum NaClO tolerance concentration

5000mg/L

 

Parameter table for each processing scale

Processing scale

membrane flux

Membrane area (m 2 )

Number of membrane holders

Single membrane frame size (mm)

Weight of single membrane frame (kg)

Operating cost (yuan/ton)

Water quality type

Average design flux
L/(m 2 ·h)

Operating flux
L/(m 2 ·h)

50TPD

domestic sewage

14-16

18-20

180

1

655*920*2884

100

5.64

Industrial waste

10-12

13-15

240

1

805*920*2884

104

6.48

landfill leachate

6-8

8-10

420

1

972.5*1371*2934

144

7.73

100TPD

domestic sewage

14-16

18-20

360

1

967.5*1221*2884

116

5.42

Industrial waste

10-12

13-15

480

1

972.5*1521*2934

150

6.47

landfill leachate

6-8

8-10

840

1

1451*1774*2964

188.3

7.46

200TPD

domestic sewage

14-16

18-20

720

1

1301*1774*2964

177.4

4.56

Industrial waste

10-12

13-15

960

1

1601*1774*2994

205.7

5.39

landfill leachate

6-8

8-10

1500

1

2451*1774*2994

333.2

6.21

300TPD

domestic sewage

14-16

18-20

1080

1

1751*1774*2994

229.3

4.32

Industrial waste

10-12

13-15

1440

1

2241*1774*2994

266.5

5.13

landfill leachate

6-8

8-10

2280

2

1826*1774*2994

234.2

5.89

Note: Operating costs include electricity consumption, chemicals and replacement of MBR membrane consumables

 

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