Hospital Dialysis Water Application
Hospital Dialysis Water Treatment System

✎ Dialysis treatment is critical for patient health, and one of the most important factors in this process is water quality. During dialysis, water comes into direct contact with the patient’s blood, so the dialysis water must meet stringent quality standards.
✎ Dissolved substances, microorganisms, and chemical contaminants in water can not only affect the treatment's efficacy but also pose a serious risk to patient safety.
✎ To ensure this, hospitals have implemented advanced water treatment machinery systems to provide purified water that meets medical standards.
Application scenarios
1. Precise W1.Reverse Osmosis (RO) filtration is one of the most effective methods for dialysis water treatmentater Quality Control:
RO membranes remove almost all dissolved substances in water, including salts, heavy metals, and organic compounds, ensuring water purity. Water is forced through semi-permeable membranes under pressure, effectively blocking most contaminants.
2. Ultraviolet (UV) sterilization technology is widely used in hospital water treatment systems.
UV light emitted by lamps quickly kills bacteria, viruses, and other pathogens in the water. Compared to traditional chemical disinfection methods, UV sterilization leaves no residual by-products, making it safe and efficient.
3. Multi-stage filtration systems remove suspended particles, bacteria, viruses, and fine particulate matter from the water through precision filters.
Activated carbon adsorption systems efficiently remove odors, chlorine, and organic contaminants, improving overall water safety and taste.
4. To ensure the efficient operation of the dialysis water treatment system, hospitals also implement intelligent water quality monitoring and automation management systems.
These systems continuously monitor key indicators such as pH, conductivity, and bacterial content, ensuring that water quality remains within acceptable ranges. Additionally, the system can automatically trigger alarms and generate data analysis reports to support the fine management of the water treatment process.
5. Electrodeionization (EDI) devices are critical in hospital dialysis water systems for producing ultrapure water compliant with YY 0572-2015 standards.
Operating downstream of RO systems, EDI combines ion-exchange resins with direct-current electric fields to remove residual ions, producing water with resistivity close to 18.2 MΩ·cm. Key medical-grade features include below:
Chemical-Free Regeneration: H⁺/OH⁻ from water splitting automatically regenerate resins, eliminating risks of acid/alkali contamination;
Integrated Sterilization: 254nm UV lamps and 0.1μm ultrafiltration membranes control bacteria <100 CFU/mL and endotoxins <0.25 EU/mL;
EDI systems enable 24/7 continuous operation, with real-time monitoring of resistivity, TOC, and flow rates. IoT-based alarms provide immediate failure alerts, safeguarding dialysis water quality.
Conclusion
Through these advanced water treatment technologies, hospitals can ensure that the water used during dialysis treatment meets the strictest health standards. Each technology is meticulously designed and implemented to ensure that patients are not affected by contaminants during treatment, providing a safer and more effective treatment environment.
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