2000L/H EDI Module Ultrapure Water System for Industrial Use
Place of Origin | Shenzhen ,China |
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Brand Name | Hongjie |
Certification | ISO 14001,ISO 9001,CE,EPA |
Model Number | HJ-UF10T |
Minimum Order Quantity | 1Set |
Price | negotiation |
Packaging Details | export standard wooden case |
Delivery Time | 1-7working days(depend on raw materials stocking) |
Payment Terms | T/T,Western Union |
Supply Ability | >300sets/month |

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xVoltage | 110V, 220V, 380V | Productivity | 250L/H-1000M3/H |
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Processing Type | Reverse Osmosis, Softening, Desalination, Filtration, Ion... | Application | Food,beverage,boiler, Electronics, Textile Etc |
Warranty | 1 Year | Weight (kg) | 300 Kg |
Material | FRP/SS304/SS316L/SS2205 /UPVC Etc | Desalination Rate | 98~99% |
Technology | Pretreatment + DPRO+EDI | Core Components | Pressure Vessel, Pump, Motor, PLC |
Highlight | 2000L/H EDI water treatment module,industrial ultrapure water system,EDI module for water purification |
2000L/H EDI Module Deionized Ultrapure Water System
I.EDI Operational Principle
An EDI membrane module is composed of several stacked units consisting of concentrate and dilute water chambers.
Pure water chamber: A working layer consisting of a mixture of resins filled between anion and cation exchange membranes, used to produce pure water, is called a pure water chamber.
Concentrate chamber: A working layer consisting of anion and cation exchange membranes connected between two pure water chambers, used to collect concentrate, is called a concentrate chamber.
Electrode plates: Conductive plates used to generate an electric field during membrane module operation, known as electrode plates. They are typically divided into positive and negative electrodes and are located at both ends of the membrane module.
The working principle of EDI is shown in the figure.In an EDI membrane module, a number of EDI cells are separated by grid plates to form a concentrate chamber and a dilute chamber. Anode/cathode electrodes are located at each end of the cell. Driven by direct current, anions and cations in the dilute chamber flow through the anion and cation exchange membranes, respectively, and migrate to the concentrate chamber, where they are removed.
II.EDI water conditions
EDI water conditions |
|
Water source: |
RO water |
Conductivity: |
<=20μs/cm |
Best conductivity: |
2-10μs/cm |
Maximum conductivity: |
<=50μs/cm |
PH value: |
6-8 |
Temperature: |
5-38 |
Inlet pressure: |
0.2-0.6MPa |
Hardness: |
Less than 0.5ppm(by CaCO3) |
Si: |
Less than 0.5ppm(by SiO2) |
III.Product features
NO. |
Features |
1 |
Efficient and stable: continuous production of high-quality ultrapure water. |
2 |
No need for acid and alkali: avoid acid and alkali consumption and discharge during the regeneration process. |
3 |
Energy saving and environmental protection: low energy consumption, environmentally friendly. |
4 |
Easy operation: high degree of automation and simple maintenance. |
5 |
Wide application: Applicable to multiple industries and meet diverse needs. |