| Sign In | Join Free | My entremaqueros.com |
|
| Categories | EDI Modules |
|---|---|
| Brand Name: | VEOLIA |
| Model Number: | MK-3 |
| Certification: | CE |
| Place of Origin: | China |
| MOQ: | 1 pc |
| Price: | Negotiable |
| Supply Ability: | 60000 Unit/Units per Month |
| Delivery Time: | 5- 8 work days |
| Packaging Details: | standard export packing |
| Material: | Nylon or PVC |
| Product Dimension: | 420mm x 460mm x 680mm |
| Lamp Base: | G38 |
| Usage: | Decoration |
| Size: | Various sizes available |
| Input Power: | 300w constant |
| Gas: | filled by Helium |
| Type: | Advertising lighting balloon |
| Scene: | Indoor or Outdoor |
| Remote Mode: | DMX512, 2.4GHz remote controller, APP |
| Power: | Various wattages available |
| Electronic Ballast: | 1200w, 50-60Hz |
| Outside Dimension: | 33x39x15cm |
| Shape: | Round or square |
| Scenes: | Film and television shooting lighting |
| Company Info. |
| Wuxi Fenigal Science & Technology Co., Ltd. |
| Verified Supplier |
| View Contact Details |
| Product List |
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 | 30 x 61 x 54 | 30 x 61 x 29 | |
Feed Water Quality | 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 | Counter-current: 4.1-6.9 | |
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 | |
|