30L Type III RO / Pure / Laboratory Water Purification System EcoPure30-I for Laboratory
Features:
- Efficient Water Production: Generates 30 liters/hour of purified water at operational costs comparable to certified bottled alternatives
- Economic & Logistical Advantage: Eliminates repetitive ordering cycles and substantial storage requirements of bottled water solutions
- Environmental Performance: Demonstrates superior sustainability metrics compared to conventional distillation-based purification methods
- Modular Installation Flexibility: Compact footprint supports multiple deployment options - benchtop, under-counter, wall-mounted, or integrated cabinet placement
- Regulatory-Driven Design: Developed in response to tightening global standards for medical device reprocessing and infection prevention
- Configurable System Selection: Offers tailored solutions addressing specific healthcare facility water quality requirements
- Comprehensive Medical Application Support: Accommodates diverse equipment from compact washer-disinfectors to large-scale endoscope reprocessing systems
- Smart Control Integration: Advanced microprocessor management paired with high-sensitivity resistance monitoring technology
- Comprehensive Operational Interface: Large-format LCD displays real-time parameters including thermal profiles, conductivity metrics, and system performance data
- Optimized Membrane Management: Automated reverse osmosis flushing protocols with intelligent flow regulation enhance cleaning efficacy and component longevity
- Hygienic Storage Engineering: Reservoirs feature contamination-resistant smooth surfaces with integrated vented filtration barriers
- Transparent System Monitoring: Continuous display of water distribution parameters, tank inventory, and operational status indicators
Healthcare Integration Benefits:
- Resolves supply chain dependencies associated with bottled water procurement
- Supports compliance with evolving international medical equipment sterilization protocols
- Adapts to constrained healthcare facility layouts through versatile mounting configurations
- Delivers consistent water quality for critical infection control applications across multiple departments
- Reduces environmental impact through energy-efficient operation and elimination of plastic waste
- Provides scalable solutions adaptable to expanding healthcare service requirements
- Minimizes operational disruptions through automated maintenance protocols and reliable performance
- Enables centralized water management for multiple medical equipment reprocessing applications
Specifications
| Model |
EcoPure30-I |
| Feed Water Requirement |
| Source |
Tap Water |
| Conductivity* |
<2000us/cm |
| Hardness** |
<450ppm as CaCO3 |
| Pressure |
0.1-0.5MPa |
| Temperature |
5~40℃ |
| Purification Water (Class III) |
| Ionic Rejection |
≥10MΩ.cm |
| Bacteria Rejection |
<30ppb |
| Conductivity |
<0.1ppm |
| Productivity Rate |
30L/h |
| Electrical Requirement |
| Electrical Voltage |
110V/220V±10% |
| Electrical Frequency |
50Hz/60Hz |
| Packing Information |
| Net Weight |
| Main unit |
25Kg |
| Water tank |
5Kg |
| External Dimensions( WxDxH,mm) |
| Main unit |
315x525x570 |
| Water tank |
380x380x595 |
| Gross Weight |
| Main unit |
37Kg |
| Water tank |
13Kg |
| Packing size (WxDxH,mm) |
| Main unit |
525x610x770 |
| Water tank |
520x440x615 |
**When hardness of feed water is high(>450ppm as CaC03), 0.5T water soften is recommended.
Introduction about laboratory water purification system
Deionization (DI) plays a critical role in achieving high-purity water, particularly for applications requiring low ionic content. DI systems use ion-exchange resins—either mixed-bed or separate cation and anion beds—to remove dissolved ionic contaminants. This process significantly increases the water’s electrical resistivity, a key metric of ionic purity. DI cartridges are often employed as a polishing step after reverse osmosis. While effective, these resins require periodic regeneration or replacement. For many labs, DI is the cornerstone technology for producing Type II water and is a necessary precursor to producing Type I ultrapure water.