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PHF-80-V Distillery wastewater ultrafiltration membrane equipment Mann+Hummel Equivalent
PHF-80-V Distillery wastewater ultrafiltration membrane equipment Mann+Hummel Equivalent
PHF-80-V Distillery wastewater ultrafiltration membrane equipment Mann+Hummel Equivalent
PHF-80-V Distillery wastewater ultrafiltration membrane equipment Mann+Hummel Equivalent
PHF-80-V Distillery wastewater ultrafiltration membrane equipment Mann+Hummel Equivalent
PHF-80-V Distillery wastewater ultrafiltration membrane equipment Mann+Hummel Equivalent

PHF-80-V Distillery wastewater ultrafiltration membrane equipment Mann+Hummel Equivalent

Mann+Hummel PHF-80-V Distillery wastewater ultrafiltration membrane equipment Equivalent

Product Introduction

In the field of industrial wastewater treatment, LEFILTER specializes in delivering high-performance membrane solutions designed for complex and demanding applications. The PHF-80-V Distillery Wastewater Ultrafiltration Membrane Equipment offers a reliable and cost-effective alternative to the Mann+Hummel series, providing distilleries with efficient separation technology to meet stringent discharge and recycling requirements.

With a focus on advanced membrane engineering, this equipment combines robust hollow fiber modules with optimized flow dynamics to handle the high organic load, suspended solids, and fluctuating characteristics typical of distillery wastewater. By integrating the Distillery Wastewater Ultrafiltration Membrane Equipment into production wastewater management systems, industries can enhance effluent quality, comply with environmental regulations, and reduce overall treatment costs.


Technical Parameters & Equipment Drawing

  • Model: PHF-80-V

  • Membrane Technology: Hollow fiber ultrafiltration (outside-in filtration mode)

  • Membrane Material: PES (Polyethersulfone)

  • Total Membrane Area: 80 m² per module

  • Pore Size Rating: 0.02 microns (nominal)

  • Operating Pressure Range: 0.2 – 0.4 MPa

  • Maximum Design Pressure: 0.5 MPa

  • Operating pH Range: 4 – 10 (normal operation)

  • Cleaning pH Range: 2 – 12

  • Temperature Range: 5°C – 45°C

  • Flow Configuration: Suitable for continuous, dead-end, or crossflow operation

  • Equipment Dimensions:

    • Module Length: 1600 mm

    • Module Outer Diameter: 225 mm

Distillery wastewater ultrafiltration membrane equipment 1



Industrial Applications of Distillery Wastewater Ultrafiltration Membrane Equipment

The Distillery Wastewater Ultrafiltration Membrane Equipment plays a vital role in the treatment and reuse of process water within distillery operations. Its high filtration capability makes it an essential component for wastewater management in various industrial sectors, including:

-Distilleries and Alcohol Production Facilities: Reducing organic load, suspended solids, and biological contaminants in production effluent, enabling reuse or environmentally compliant discharge.

-Beverage and Fermentation Industries: Treating high-strength wastewater with fluctuating characteristics to maintain effluent standards and optimize biological treatment efficiency.

-Food Processing Plants: Managing organic-laden wastewater streams while minimizing operational disruptions and maintaining regulatory compliance.

-Industrial Wastewater Reuse Systems: Enhancing pre-treatment stages for advanced water recycling applications, reducing overall plant water consumption.


FAQ

Q: What specific benefits does the PHF-80-V membrane equipment offer in distillery wastewater treatment?

A: The system effectively removes suspended particles, colloidal materials, and microbial contaminants, improving effluent clarity and reducing the treatment load on downstream biological or chemical processes.


Q: How should the membrane modules be maintained to ensure reliable long-term operation?

A: We recommend routine backflushing combined with periodic chemical cleaning, adhering to recommended cleaning protocols based on water quality and system performance. Cleaning within the approved pH and temperature ranges will help maintain filtration efficiency and prolong membrane life.

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