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Reverse Osmosis System Applied to Industrial Concentrated Salt Sewage

A reverse osmosis and reverse osmosis membrane technology, applied in the field of reverse osmosis systems, can solve the problems of low hydrothermal stability of organic membranes, low salt retention rate and flux, easy blockage of reverse osmosis devices, etc. The effect of reducing and pressurizing equipment, preventing contamination

Active Publication Date: 2021-11-12
江苏东江环境服务有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] In order to solve the above technical problems, the present invention provides a reverse osmosis system applied to industrial concentrated salt sewage, which solves the problem of high investment cost, high energy consumption and large occupied area of ​​the existing reverse osmosis treatment system; the reverse osmosis device is easy to block, High maintenance costs, high operating energy consumption, low hydrothermal stability of organic membranes, low salt rejection and flux, low water flux of inorganic membranes, complex preparation process, etc.

Method used

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  • Reverse Osmosis System Applied to Industrial Concentrated Salt Sewage
  • Reverse Osmosis System Applied to Industrial Concentrated Salt Sewage
  • Reverse Osmosis System Applied to Industrial Concentrated Salt Sewage

Examples

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Comparison scheme
Effect test

Embodiment 1

[0025] Embodiment 1 is applied to the reverse osmosis system I of industrial concentrated salt sewage

[0026] like Figure 1-3 As shown, a reverse osmosis system applied to industrial concentrated salty sewage includes a tank a, and two horizontal partitions are arranged in the tank a, and the two horizontal partitions separate the tank a It is the raw water chamber a1, the primary reverse osmosis chamber a2 and the secondary reverse osmosis chamber. A reverse osmosis device d, said secondary reverse osmosis chamber is provided with reverse osmosis membrane I, said reverse osmosis membrane I separates said secondary reverse osmosis chamber into a second permeation zone a31 and a second clean liquid zone a32;

[0027] figure 2 and image 3As can be seen from above, the reverse osmosis device d includes an upper mounting base 1 and a lower mounting base 2 facing each other, and a reverse osmosis membrane I is arranged between the upper mounting base 1 and the lower mounting...

Embodiment 2

[0038] Embodiment 2 is applied to the reverse osmosis system II of industrial concentrated salt sewage

[0039] like Figure 1-3 As shown, a reverse osmosis system applied to industrial concentrated salty sewage includes a tank a, and two horizontal partitions are arranged in the tank a, and the two horizontal partitions separate the tank a It is the raw water chamber a1, the primary reverse osmosis chamber a2 and the secondary reverse osmosis chamber. A reverse osmosis device d, said secondary reverse osmosis chamber is provided with reverse osmosis membrane II, said reverse osmosis membrane II separates said secondary reverse osmosis chamber into a second permeation zone a31 and a second clean liquid zone a32;

[0040] figure 2 and image 3 As can be seen from above, the reverse osmosis device d includes an upper mounting base 1 and a lower mounting base 2 facing each other, and a reverse osmosis membrane II is arranged between the upper mounting base 1 and the lower mou...

Embodiment 3

[0051] Embodiment 3 is applied to the reverse osmosis system II of industrial concentrated salt sewage

[0052] like Figure 1-3 As shown, a reverse osmosis system applied to industrial concentrated salty sewage includes a tank a, and two horizontal partitions are arranged in the tank a, and the two horizontal partitions separate the tank a It is the raw water chamber a1, the primary reverse osmosis chamber a2 and the secondary reverse osmosis chamber. A reverse osmosis device d, said secondary reverse osmosis chamber is provided with reverse osmosis membrane III, and said reverse osmosis membrane III separates said secondary reverse osmosis chamber into a second permeation zone a31 and a second clean liquid zone a32;

[0053] figure 2 and image 3 As can be seen from above, the reverse osmosis device d includes an upper mounting base 1 and a lower mounting base 2 facing each other, and a reverse osmosis membrane III is arranged between the upper mounting base 1 and the lo...

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Abstract

The invention discloses a reverse osmosis system applied to industrial concentrated salt sewage, which comprises a tank body, and two horizontal partitions are arranged opposite to the tank body, and the two horizontal partitions divide the tank body into a raw water chamber, a primary reverse osmosis chamber and In the secondary reverse osmosis chamber, the raw water chamber, the primary reverse osmosis chamber and the secondary reverse osmosis chamber are connected by pipes, and at least one reverse osmosis device is arranged in the primary reverse osmosis chamber. Compared with the prior art, the present invention works simultaneously through a plurality of reverse osmosis devices, improves production efficiency, reduces intermediate pools and booster equipment, and realizes cost reduction and energy consumption reduction; the reverse osmosis devices are driven by ultrasonic vibration devices and aeration devices The liquid in the liquid storage area cleans the reverse osmosis membrane, prevents the clogging of the reverse osmosis device, improves the water purification rate, and reduces the energy consumption required for operation; the reverse osmosis membrane can effectively prevent the charged ions from passing through and let the neutral water molecules free Through the process, the flux of the composite membrane is greatly improved and the service life is long when the salt interception rate remains basically unchanged.

Description

technical field [0001] The invention relates to the technical field of wastewater treatment, in particular to a reverse osmosis system applied to industrial concentrated salt sewage. Background technique [0002] Chemical, printing and dyeing, medicine, food and many other industrial productions will produce a large amount of high-salt wastewater, and the discharge of such wastewater will cause serious pollution to the environment. Therefore, how to deal with high-salt wastewater has become a hot research topic. Reverse osmosis, also known as reverse osmosis, is a membrane separation operation that uses pressure difference as the driving force to separate the solvent from the solution. Because it is opposite to the direction of natural infiltration, it is called reverse osmosis. According to the different osmotic pressures of various materials, the reverse osmosis pressure greater than the osmotic pressure can be used, that is, the reverse osmosis method, to achieve the pu...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C02F1/44C02F9/02B01D65/02B01D61/08B01D61/04
Inventor 谈际满洪海宣蓉缪松峰
Owner 江苏东江环境服务有限公司
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