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High-efficiency Ultrafiltration (UF) Systems For Industrial Wastwater Treatment 60TPH

Place of Origin Shenzhen,Guangdong
Brand Name HJW
Certification ISO 14001,ISO 9001,CE,EPA
Minimum Order Quantity 1set
Price US$139200~US$144500
Packaging Details export standard wooden case
Delivery Time 1-7working days(depand on raw materials stocking)
Payment Terms L/C,D/P,T/T,Western Union
Supply Ability >300sets/month

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Product Details
Capacity 60m³/H(Customizable) Working Voltage 380V/220V/50Hz
Operation Method Manual Or Automatic Operation Recovery Rate 50-65%
HS Code 84212199 Usage Environmental Protection, Chemical Industry
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Product Description

I.Overview
Ultrafiltration (UF) systems are mainly used in industrial wastewater treatment for suspended solids removal, oil-water separation, heavy metal recovery and wastewater reuse, which can significantly improve water quality and reduce the subsequent treatment load. Its core value in industrial wastewater treatment is: resource recovery (such as heavy metals, protein enrichment and reuse), emission reduction and efficiency (reduce COD, color, to meet the stringent emission standards), process adaptability (flexible combination of RO, electrolysis and other units to deal with complex wastewater).


II.Typical Process Flow 


Electroplating Wastewater Treatment (Heavy Metal Recovery):

Electroplating wastewater → adjust pH to 9~10 (metal hydroxide formation) → ultrafiltration (50 kDa) → electrolytic recovery of metals in the concentrated solution → filtrate discharged in accordance with standards


Dyeing wastewater decolorization and reuse:

dyeing wastewater → coagulation (PAC) → ultrafiltration (10 kDa) → activated carbon adsorption → RO → reuse


Petrochemical oil wastewater treatment:

oil-containing wastewater → air flotation emulsion breaking → ultrafiltration (0.02 μm) → effluent oil content <5 mg/L → re-injection or discharge


III.Core Attribute Parameters

Performance Requirements for Ultrafiltration Membranes
Parameter Typical Values for Industrial Wastewater Description
Membrane Material PVDF, PES, Ceramics PVDF is resistant to organic solvents; Ceramics are resistant to high temperature (>80℃).
Pore Size 0.01~0.05 μm Dyeing wastewater: 0.02 μm; Oily wastewater: 0.05 μm.
Flux (LMH) 15~50 (Highly Polluted Wastewater) Electroplating wastewater: 20~30; Food wastewater: 40~60.
Operating Pressure 1~3 bar High-viscosity wastewater (e.g., papermaking black liquor) requires higher pressure.
pH Resistance Range 2~12 (During Chemical Cleaning) Electroplating wastewater requires resistance to strong alkali (pH≥10).
 Treatment Effects
Wastewater Type Ultrafiltration Effluent Discharge Standard
Electroplating Wastewater Ni²⁺ <1 mg/L Emission Standard for Electroplating Pollutants (Table 3)
Dyeing Wastewater COD 200~300 mg/L Discharge Standard for Water Pollutants in Textile Dyeing and Finishing Industry
Oily Wastewater Oils <5 mg/L Emission Standard for Pollutants in Petrochemical I


IV.Typical Application Scenarios 
Plating/Electronics 
Textile Printing & Dyeing 
Petrochemical 
Food Processing 
Paper Making


V.Technical Advantages 
High-efficiency separation 
Modular design 
Low chemistry


VI.Here is a guideline for you to get a proper quotation
Tell us the raw water/source of water(tap water, well water, or sea water, etc)
Provide water analysis report(TDS , conductivity, or resistivity, etc)
Required production capacity( 5m³/H, 50m³/H,or 500m³/H, etc)
What's the pure water used for( industrial,Food and Beverage,or agriculture, etc )