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Stainless Steel Purifying Reverse Osmosis Machine Ro Water Purifier For Industry

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Address: 8 Suyuanzhuang, Junhe Street, Baiyun District, Guangzhou, China

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Guangzhou Chunke Environmental Technology Co., Ltd.

Stainless Steel Purifying Reverse Osmosis Machine Ro Water Purifier For Industry

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City & Province guangzhou guangdong
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Product Details

Stainless Steel Purifying Reverse Osmosis Machine Ro Water Purifier For Industry

 

Effective membrane area:

 

Pure water and ultrapure water industry use reverse osmosis membranes almost all of which are roll-type membranes. The membrane is spirally

 

wound on the central tube, and the influent water enters from the end face of the rolled membrane (the direction of water flow is parallel to the

 

membrane surface). The pure water that has passed through the membrane is collected and discharged from the central tube, and the trapped

 

impurities are discharged with the concentrated water (the influent water is gradually concentrated to become concentrated water through the

 

surface of the membrane). The amount of water produced by the reverse osmosis membrane is proportional to the membrane area. The larger

 

the membrane area, the larger the water production. When the reverse osmosis membrane is rolled, it is formed into a film bag, and the edge of

 

the film bag is not provided with water-making ability, and the effective film area must be removed from the bonding area.

 

Desalination rate:

 

The percentage of the concentration of soluble impurities removed from the influent water by the reverse osmosis membrane is an important

 

technical indicator for measuring the quality of the reverse osmosis membrane. The higher the desalination rate, the better. Desalination rate

 

calculation formula: Desalination rate = (1 - salt content of water production / salt content of influent water) × 100%. The salt rejection of the

 

membrane element has been determined at the time of its production and formation. The degree of salt rejection depends on the density of the

 

ultra-thin desalination layer on the surface of the membrane element. The denser the desalination layer, the higher the salt rejection rate, but

 

the lower the water production. The removal rate of different substances by reverse osmosis is mainly determined by the structure and

 

molecular weight of the substance. The removal rate of high-valent ions and complex monovalent ions can exceed 99%, and the removal of

 

monovalent ions such as sodium ion, potassium ion and chloride ion The rate is slightly lower, but it is also over 98%; the removal rate of

 

organic matter with molecular weight greater than 100 can also reach 98%, but the removal rate of organic matter with molecular weight less

 

than 100 is lower. The salt rejection rate shown in the figure below = (1-2.4/200) × 100% = 98.8%

 

Detail Pictures :
 


 

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