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Hemodialysis Unit:
Dedicated water for blood purification of hemodialysis patients, rinsing dialyzers, and preparing dialysis fluid.
Operating Room:
Sterile water for hand hygiene of medical staff prior to surgery and for cleaning surgical instruments.
Clinical Biochemistry Laboratory:
High-purity water for analytical testing, reagent preparation, laboratory experiments, biological culture, container rinsing, and cleaning of biochemical analyzers.
Central Laboratory:
Water for reagent preparation and analytical use in central laboratory operations.
Central Sterile Supply Department (CSSD):
Sterile water for precision cleaning of instruments and use in automated washing machines.
Pathology Department:
Water for contrast film washing, analytical and biochemical testing, and equipment operation.
DSA & Endoscopy Units:
Sterile water for cleaning catheters and endoscopic devices.
Dentistry Department:
Sterile water for dental hygiene procedures and instrument rinsing.
Pharmacy Compounding Room:
Water for large-volume infusions and sterile, high-purity water for pharmaceutical preparation.
Obstetrics Department:
Sterile water for hand hygiene of medical staff and cleaning of surgical instruments prior to surgery.
Drinking Purified Water:
Supply of purified drinking water for internal hospital use.
Acidic Electrolyzed Water (AEO Water):
Used for disinfection in endoscopy centers, CSSD, dentistry departments, operating rooms, and nurse stations in patient wards.
Alkaline Electrolyzed Water (AEO Water):
Used for decontamination and removal of organic residues in endoscopy centers, CSSD, dentistry departments, operating rooms, and nurse stations in patient wards.
Economic Benefits:
Initial Investment | Water Resource Utilization | Electricity Cost | Consumable Costs | Maintenance Personnel | Space Saving | Noise Reduction | Ease of Certification | Elevated Image & Quality |
Comparable equipment cost, but with extended piping system | Water use efficiency doubled | Advanced variable frequency control and dynamic energy-saving technology significantly reduce power consumption | Drastic reduction in consumable types and sizes; longer service intervals and reduced replacement frequency | Labor requirement reduced by up to 80%; only one dedicated staff member needed | No longer occupies operational space in clinical departments | No power-driven equipment at usage points or in departments—virtually silent operation | Fully compliant with Green Building Evaluation Standard for sustainable facility design | Scientific, aesthetically pleasing room layout with integrated networked visual management platform — enhancing institutional professionalism |
Equipment Selection Table:
Equipment Model | ULPZY-2x4T | ULPZY-2x6T | ULPZY-2x8T | ULPZY-2x10T |
Rated Output Capacity(m3/h) | 8.0 | 12.0 | 16.0 | 20.0 |
Installed Power(KW) | 25 | 35 | 45 | 50 |
Floor Area (m²) | 50.0 | 60.0 | 80.0 | 100.0 |
Suitable Hospitals (Bed Capacity) | 400-600 | 600-800 | 800-1000 | ≥1000 |
Note: Effluent Water Quality Standards
Analytical Laboratory Water (Analytical Use):
Complies with the National Standard for Laboratory Water Quality — GB/T 6682-2008.
Cleaning and Disinfection Water:
Meets the requirements of WS310-2016: Technical Specifications for Cleaning, Disinfection, and Sterilization of Medical Instruments.
Flexible Endoscope Washing Water:
Conforms to WS507-2016: Technical Specifications for Cleaning and Disinfection of Flexible Endoscopes.
Hand Washing Water:
Adheres to the U.S. washing water quality standard (typical reference: AAMI ST79 or EPA guidelines for hygiene water).
Disinfection Water (e.g., for surface disinfection):
Complies with GB 28234-2020: Hygienic Safety Standard for Electrolyzed Oxidizing Water.
Softened Water (for boiler feedwater):
Meets specifications in GB/T 1756-2018: Industrial Boiler Feedwater Quality.
Drinking Purified Water:
Complies with CJ 94-2005: Quality Standard for Drinking Purified Water.
The system achieves fully intelligent and automatic operation control, with automatic detection, protection, alarm, and response functions for abnormal conditions such as water outages, power failures, overloads, and pipeline leaks.
Remote management and real-time monitoring are supported, enabling continuous tracking of water quality, temperature, pressure, and flow rate at the raw water, pre-treatment, purified water, and post-treatment stages via an intuitive human-machine interface (HMI).
Equipped with a PLC + touch screen fully automatic control system, the unit offers compact footprint and low operating noise.
Advanced pipeline design features 304 stainless steel piping, enabling dual-water-path supply, circulation-based disinfection, and scheduled forward/reverse pipe flushing—fully complying with the 3D requirements for purified water systems.