Electrical Equipment Decontamination
Products Details
Electrical Equipment Decontamination are designed for treatment operations involving PCB-contaminated oils and residues associated with transformers and electrical equipment. They are especially suitable for maintenance, decontamination, and hazardous-waste handling projects where contaminated fluids and related residues must be treated before transfer, storage, disposal, or incineration.
The system works through co-catalyst-assisted dechlorination at 80°C to 100°C using an integrated heated reactor, controlled agitation, and optimized reaction chambers. The treatment process is based on Pd/C and activated kaolin, which are used to improve dechlorination efficiency and reduce PCB toxicity under monitored operating conditions.
After reaction, the treated stream passes through filtration and separation, followed by final evaluation before storage or final handling. Integrating advanced Transformer PCB Decontamination Systems also includes thermal protection, pressure control, emergency stop, and controlled handling of spent catalyst and contaminated residues, making it suitable for safer decontamination of equipment-related hazardous streams.
Product Drawing
| Designation | Characteristics |
| Reference | Electrical Equipment Decontamination |
| Application | PCB-contaminated oils, dielectric fluids, chlorinated residues, and equipment-related contaminated streams |
| Working Type | Chemical PCB dechlorination and decontamination 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 | Inspection, pretreatment, heating, solvent introduction, co-catalyst injection, reaction, filtration, separation, final validation |
| Filtration System | Advanced filtration for treated output 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, safer decontamination workflow, structured downstream handling |
| Industrial Sectors | Electrical maintenance, transformer servicing, hazardous oil treatment, PCB waste management |
How does Electrical Equipment Decontamination work?
Electrical Equipment Decontamination begins with inspection and pretreatment of the contaminated oil or residue linked to the equipment. 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 output moves to filtration and separation, then to final evaluation before storage, transfer, disposal, or incineration.
Application and Case
Electrical Equipment Decontamination is suitable for:
- Transformer maintenance projects
- PCB-contaminated dielectric fluid treatment
- Hazardous electrical-equipment cleanup
- Equipment-related oil decontamination
- PCB waste pretreatment before disposal
- Industrial electrical decontamination programs
Electrical Equipment Decontamination are especially suitable for operators who need a controlled treatment process for PCB-related contamination in electrical environments 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.