Type 2 Water Purification System Lab Pure Water System 30 Liters For Clinical Analyzers
- Maximum compatibility BioPure30T-RO water purification systems can be applied to prepare pure water solution for a series of biochemical analyzers, including TOSHIBA, OLYMPUS, HITACHI, ROCHE, MINDRAY and so on.
- High volume solution Optional tank with 25L purification resin can meet heavier water usage, decreasing change frequency of consumables.
- Special emphasis on bacteria containment On the basis of BioPure15T-RO/30T-RO/50T-RO, the model 100T-RO/200T-RO further upgrades the system. It possesses a re-circulation function to always ensure a desirable pure water quality. UV, micro-filtration technologies and easy sanitization ensures optimal bacteria purity of less than 1 CFU/ml
- Bypass function to save your worry An emergency bypass prevents downtime by providing an uninterrupted supply of pure water to the analyzer at all time. We understand that downtime can not be allowed in the clinical laboratory.
| Model | BioPure30T-RO |
| Productivity Rate | 30L/h |
| Feed Water Requirement | |
| Source | Tap Water |
| Conductivity* | <2000us/cm |
| Hardness** | <450ppm as CaCO3 |
| Pressure | 0.1-0.5MPa |
| Temperature | 5~40℃ |
| High Quality Purification Water (Type II) | |
| Resistivity At 25℃ | ≥10MΩ.cm |
| TOC | <30ppb |
| Dissolved Organic | <0.1ppm |
| Particulate(≥0.02um) | <1pc/ml |
| Bacteria | <1cfu/ml |
| Flow Rate | 1.0~1.5L/min |
| 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 tank is recommended
To produce water suitable for scientific work, laboratory purification systems utilize a combination of technologies. Reverse osmosis acts as a preliminary barrier, filtering out large particles and dissolved ions. Deionization further purifies by exchanging ions with resins, thereby increasing water resistivity. UV irradiation effectively inactivates microorganisms and breaks down organic contaminants, reducing total organic carbon (TOC). Additional filtration via activated carbon or ultrafiltration membranes targets specific impurities. This layered approach allows labs to generate on-demand water tailored to specific needs, from basic cleaning to advanced analytical techniques, all while minimizing external contamination risks.
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