Introducing Electro Oxidation Wastewater Treatment Module Unit EOU7320
Water treatment modular unit EOU7320 is the core component of electrochemical wastewater treatment equipment such as advanced electro-oxidation electrolyzers and integrated electro-oxidation water treatment equipment, it’s a new approach to realize efficient and innovative electrochemical oxidation remediation of complex industrial effluents. Modular unit EOU7320 employs electrode assembly with seven pieces of boron doped diamond electrodes and 8 pieces of Titanium electrodes, it offer high electrochemical oxidation treatment efficiency with active electrode area approaching 4200 cm2, and maximum current density up to 100 mA/m2. Unlock the capability of electrochemical wastewater electrolysis with this modular unit. Join us to explore how advanced electrochemical oxidation processes technology provide unmatched removaling efficiency and sustanability, and enhance your treatment processes.
Key Features and Benefits of Electrocehmical Wastewater Treatment Module Unit EOU7320
Designed to Fit Into Existing System
As an efficieny treatment equipment designed for orgnic pollutants removal for tertiary treatment, but yet with compact design, which requires limited space, our modular unit could fit into operating water treatment system. The way in which streams enters the modular unit is controlled in such a way that making field operation simpler.
High Electrochemical Efficiency
With an active electrode area at 4200 cm2, maximum current density at approx 100 mA/m2, modular unit EOU7320 can deliver super electrochemical oxidation removal efficiency toward organic polluants.
Simplified Operation & Maintenance
Given the excellent chemical and mechanic stability, anti-fouling nature of boron doped diamond electrode as core part of the electrochemical oxidation, processes, daily operation and routine maintenance made simple, including refrequent anode material changing and adding of extra chemicals.
Key Characteristics of Electrochemical Wastewater Treatment Module Unit EOU7320
Electrochemical Wastewater Treatment Module EOU7320 Structures
Modular unit EOU7320 is a upgrade version of Unit 724, it’s designed to handle much higher flow rate and effluent input, is designed to fit into electrolytic cell to conduct larger scale wastewater electrolysis, main structures of modular unit EOU7320 are electrode assembly, chemically insert PTFE shell, metal contact parts and accessories.
Water Treatment Modular Unit EOU7320 Specifications
Electrode Assembly: Anode Material: BDD Electrode with Silicon Substrate (BDD/Mono-Si Electrode) Dimensions: 320*180*5 mm Quantity: Seven pieces Cathode Material: Titanium Electrode Dimensions: 404*200*1.5 mm Quantity: Eight pieces Active Area: Up to 7600 cm2 Electric Parameters: Working Voltage:≤DC~12V Rated Current:≤ DC~340 A Net Weight: 20 kg *Accessory: Conductive pole:Titanium; PPH Shell:PTFE Plate
Elevate Your Water Profile And Adopt Electro Oxidation To Emit Better Treatment Results With EOU7320
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Find Out How Modular Unit EOU7320 Become Core Component of Our Water Treatment System
Boron doped diamond electrode was selected to function as anode material within the electrode assembly of modular unit EOU7320, for electrochemical treatment of wastewater, to degrade recalcitrant organic compounds in industrial effluents.
01
Best anode material
Boron doped diamond electrode got extremely high oxygen evolution potential and the widest electrochemical window among all electrodes.
02
Efficient
Superb organic pollutant removal efficiency, resistant to acid and alkali, less fouling, easy to operate and maintenance.
03
Eco-friendly
No extra toxic chemicals need to be added to the electro oxdiation processes. Hydroxyl radicals mineralize organic compounds.
Explore More About Boron doped diamond Electrode Electrolysis
BDD Electrolysis
Electrochemical Wastewater Treatment Module EOU7320 Effects
Electrochemical Oxidation of Petrochemical Wastewater
Electrochemical Advanced Oxidation of Active Pharmaceutical Ingredient
Electrochemical Removal of Dyes and Pigments from Textile Wastewater
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