China Upgrade EDI Modules For Advanced And Environmentally Friendly Solution for sale
China Upgrade EDI Modules For Advanced And Environmentally Friendly Solution for sale
China Upgrade EDI Modules For Advanced And Environmentally Friendly Solution for sale

Upgrade EDI Modules For Advanced And Environmentally Friendly Solution

The advantages of Electrodeionization (EDI) compared to Mixed Bed systems are numerous. EDI offers a more advanced technology, eliminating the need for regeneration chemicals or neutralization systems. This results in significantly lower operating costs and a more environmentally friendly solution. Additionally, EDI systems offer continuous and simplified operation, leading to improved process efficiency. Furthermore, with a smaller footprint and reduced building height

Usage Decoration
Shape Round or square
Scenes Film and television shooting lighting
Place of Origin China
Size Various sizes available
Input Power 300w constant
Product Description

The advantages of Electrodeionization (EDI) compared to Mixed Bed systems are numerous. EDI offers a more advanced technology, eliminating the need for regeneration chemicals or neutralization systems. This results in significantly lower operating costs and a more environmentally friendly solution. Additionally, EDI systems offer continuous and simplified operation, leading to improved process efficiency. Furthermore, with a smaller footprint and reduced building height requirement, EDI systems are easier to integrate into existing industrial facilities. Overall, EDI technology offers a cost-effective, environmentally friendly, and efficient alternative to Mixed Bed systems.

 

 

 

 

parameter data


Stack Name

MK-3PharmHT

MK-3MiniHT

Weight

Dimensions

Shipping weight (kg)

92

52

Dimensions
(cm as width x height x depth)

30 x 61 x 54

30 x 61 x 29

 

 

 

 

Feed Water Quality
Specifications

Total exchangeable anions (ppm as CaCO3)

< 25

< 25

Conductivity (μS/cm)

< 43

< 43

pH

4-11

4-11

Temperature (°C)

4.4-40

4.4-40

Hardness (ppm as CaCO3)

< 1.0

< 1.0

Silica (ppm as SiO2)

< 1.0

< 1.0

TOC (ppm)

< 0.5

< 0.5

Turbidity (NTU)

< 1.0

< 1.0

Color (APHA)

< 5

< 5

Chlorine (ppm)

< 0.05

< 0.05

Fe, Mn, H2S (ppm)

< 0.01

< 0.01

Oxidant

Not detected

Not detected

Oil and grease

Not detected

Not detected

SDI15

< 1.0

< 1.0

Product Water Quality

Resistivity (MOhm-cm)

> 10

> 10

TOC (ppb)

< 500

< 500

 

 

 

 

Operating Parameters

Maximum water production (m3/hr)

4.5

1.5

Minimum water production (m3/hr)

1.6

0.5

Typical designed water production (m3/hr)

2.0-4.5

0.5-1.5

Recovery

Up to 96%

Up to 93%

Voltage (VDC)

0-300

0-150

Amperage (ADC)

0-5.2

0-5.2

Inlet pressure (bar)

Counter-current: 4.1-6.9
Co-current: 3.1-6.9

Counter-current: 4.1-6.9
Co-current: 3.1-6.9

Dilute inlet/outlet standard pressure drop (bar)

1.4-2.8

1.4-2.8

Minimum pressure difference between dilute outlet and concentrate inlet (bar)

0.34

0.34

Number of 1 hour sanitization cycles

160

160

Maximum sanitization temperature (°C)

85

85

 
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