A waste water treatment plant for a hospital is an advanced system designed to treat sewage and waste water generated by hospital facilities, utilizing a combination of membrane separation technology and biological treatment to produce high-quality, reusable water.
The process involves several steps: sewage flows through a grille, then to a regulating pond, followed by a Membrane Bioreactor (MBR), and finally the treated water is discharged for reuse.
Key features include high-efficiency solid-liquid separation, compact structure, strong interception function of the membrane, low energy consumption, and reduced sludge treatment costs.
The system operates effectively within a temperature range of 5℃ to 45℃.
The maximum operating negative pressure for the membrane is -0.06 MPa.
The system saves up to 50% of the space compared to traditional waste water treatment systems due to its compact design.
The lifespan of the membrane after installation is approximately 3 to 5 years.
Yes, the treated water can be reused without the need for third-level treatment, thanks to its high quality and stability.
The system is primarily constructed from stainless steel and features a reinforced PVDF membrane for durability.
The recommended backwash flow for the membrane is between 30 to 80 L/m².h.
This system combines membrane technology with biological treatment, allowing for better solid-liquid separation, reduced sludge volume, and lower operational costs compared to traditional methods.
The system requires simple maintenance, including periodic cleaning of the membrane, which can be done easily as the membrane modules can be separately cleaned.
Yes, the waste water treatment plant features high automation, allowing for simple operation and monitoring.
The outlet water quality is very high, with turbidity levels less than 1 NTU and suspended solids (SS) less than 1 mg/L.
The system reduces operational costs by minimizing energy consumption, decreasing sludge residue, and extending the cleaning intervals for the membranes.
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