BoKaWater SW-4040HF Seawater Desalination Membrane for High Water Quality Assurance,Reverse Osmosis Membrane,Sea Water Membrane Element
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BoKaWater SW-4040HF Seawater Desalination Membrane for High Water Quality Assurance

Item No.: BK-C-SW-4040HF
The BoKaWater SW-4040HF is designed for seawater desalination with high NaCl and boron rejection. Its excellent anti-fouling properties and cleaning recovery ensure long-term stable performance, meeting WHO and national drinking water standards.
Description
Description
Description

The SW-4040HF membrane offers high NaCl and boron rejection, helping customers meet World Health Organization standards and national drinking water hygiene standards. It maintains high performance over long-term operation, with strong anti-fouling capability and excellent cleaning recovery.

Product Specifications and Performance Parameters Table

Model

Stable Salt Rejection Rate

Minimum Salt Rejection Rate

Stable Boron Rejection Rate

Water Production Rate

Effective Membrane Area

Feed Water Screen

Test Solution Concentration

Test Pressure

%

%

%

GPD

m³/d

ft2

m2

mil

mg/L

psi

MPa

SW-4040HF

99.8

99.6

93

2200

8.3

100

9.3

28

NaCl :32000

+

H3BO3 :5

(Boron-Based)

 

800

 

5.52

Test Conditions: NaCl + H₃BO₃ aqueous solution, temperature 25°C, pH 7.5-8.0, recovery rate 8%; water production variation range ±15%.

Operating Conditions

Maximum Operating Pressure

1200 psi (8.27MPa)

Maximum Feed Water Temperature

45 

Maximum Feed Water SDI15 (Silt Density Index)

5.0

Chlorine Tolerance

0.1 mg/L

Feed Water pH Range for Continuous Operation

2-11

Feed Water pH Range for Chemical Cleaning (30 min)

1-13

Maximum Allowable Pressure Drop for Single Membrane Element

15 psi (0.10 MPa)

 
1.The maximum temperature for continuous operation at a pH above 10 is 35°C.
2.Under certain conditions, the presence of residual chlorine and other oxidants can lead to premature membrane failure. It is recommended that users remove it through pretreatment before residual chlorine comes into contact with the membrane.
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