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**Working Principle**
1. **Adsorption Mechanism**:
- *Physical Adsorption*: Traps molecules via van der Waals forces within carbon micropores.
- *Chemical Adsorption*: Neutralizes reactive gases through surface chemical reactions (for impregnated carbons).
2. **Process Flow**:
Polluted air → Inlet manifold → Multi-stage filtration → Activated carbon adsorption layer → Purified air discharge.
**Technical Advantages**
- **High Efficiency**: Removal rates up to 90-95% for VOCs and odors.
- **Dual-Stage Purification**: Combines oxidation and adsorption for comprehensive treatment.
- **Energy-Saving**: Low power consumption with optimized UV lamp configurations.
- **Ozone Control**: Built-in ozone decomposition or adsorption to meet safety standards (e.g., OSHA, EPA).
- **Modular Design**: Scalable for different airflow capacities (1,000-50,000 m³/h).
- **Low Maintenance**: Easy replacement of UV lamps and activated carbon.
**Key Applications**
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