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PCB Contaminated Oil treatment

  • Application: Treatment of PCB-contaminated oils, insulating oils, dielectric fluids, and related hazardous liquid streams from transformers, capacitors, and electrical equipment
  • Working Type: Chemical PCB dechlorination system
  • Operating Temperature: 80°C – 100°C
  • Treatment Principle: Co-catalyst-assisted chemical dechlorination to reduce PCB toxicity before filtration, separation, and final handling
  • Main Treatment Media: Pd/C and activated kaolin
  • Core Process: Oil preparation, controlled heating, solvent introduction, co-catalyst dosing, reaction, filtration, separation, and final validation
  • Control Mode: Digital process control with monitored temperature, reaction conditions, and safety functions

Product Detail

Products Details

PCB Contaminated Oil Treatment Equipment are designed for the treatment of hazardous oils containing PCB before final disposal or further processing. They are especially suitable for projects involving contaminated insulating oils, dielectric fluids, and oils extracted from electrical equipment.

The system works through chemical dechlorination at 80°C to 100°C using a heated reactor, controlled agitation, and a dedicated co-catalyst section. The process is based on Pd/C and activated kaolin, which are used to improve dechlorination efficiency and reduce PCB toxicity under controlled operating conditions.

After reaction, the treated oil passes through filtration and separation, followed by final evaluation before storage, transfer, or disposal. Utilizing advanced PCB Contaminated Oil Treatment Systems also includes safety logic such as thermal protection, pressure control, emergency stop, and controlled handling of spent catalyst and contaminated residues.

Product Drawing

Designation Characteristics
Reference PCB Contaminated Oil Treatment
Application PCB-contaminated oils, dielectric fluids, insulating oils, hazardous liquid streams
Working Type Chemical PCB dechlorination system
Operating Temperature 80°C – 100°C
Treatment Principle Co-catalyst-assisted chemical dechlorination
Main Treatment Media Pd/C, activated kaolin
Reactor Design Integrated heating with controlled agitation
Core Process Oil preparation, heating, solvent introduction, co-catalyst injection, reaction, filtration, separation, final validation
Filtration System Advanced filtration for separation of treated oil and solid residues
Control System Digital control panel with monitored operating parameters
Safety Features Thermal protection, pressure control valves, emergency stop
Residue Handling Controlled handling of spent kaolin, catalysts, and contaminated solids
Main Advantages Reduced PCB toxicity, controlled treatment process, safer downstream handling
Industrial Sectors Hazardous oil treatment, electrical maintenance, PCB waste management

How does PCB Contaminated Oil Treatment work?

PCB Contaminated Oil Treatment begins with preparation and inspection of the contaminated oil. The reactor is then brought to the required range of 80°C to 100°C, and the process starts with solvent introduction, precise co-catalyst dosing, and controlled mixing inside the reactor.

During the reaction stage, the system promotes dechlorination using Pd/C and activated kaolin under monitored conditions. Once treatment is complete, the oil moves to filtration and separation, then to final evaluation before storage, transfer, or disposal.

Application and Case

PCB Contaminated Oil Treatment is suitable for:

  • PCB-contaminated insulating oil treatment
  • Dielectric fluid decontamination
  • Hazardous oil pretreatment before disposal
  • Transformer and capacitor oil treatment
  • Electrical equipment cleanup projects
  • Industrial PCB oil management

PCB Contaminated Oil Treatment Equipment are especially suitable for operators who need a controlled chemical treatment process for hazardous PCB-bearing oils with moderate operating temperature, structured reaction control, and safer downstream handling. Integrating a dedicated PCB Dechlorination System is a strong choice for projects requiring high-efficiency decontamination and hazardous residue containment.

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