Enhanced Gas-Liquid Contact Efficiency
The system uses reverse jet nozzles to create strong turbulence between gas and liquid phases. This forms a stable micro bubble zone, increasing contact area and improving removal efficiency.
Industrial Air Pollution Control · Engineered for Industry

VOCs Treatment
Advanced wet scrubber using micro bubble technology to maximize gas-liquid contact for higher removal efficiency.
Product Overview
The wet scrubber system is designed for industrial exhaust gas treatment, dust removal, and acid gas absorption. It uses advanced micro bubble scrubbing technology to enhance gas-liquid contact, improving removal efficiency for particles and soluble gases.
Through optimized gas-liquid interaction, the system achieves high efficiency, stable operation, and reduced water consumption. It is suitable for handling complex exhaust streams with high humidity, viscosity, or fluctuating loads.
Key Features
The system uses reverse jet nozzles to create strong turbulence between gas and liquid phases. This forms a stable micro bubble zone, increasing contact area and improving removal efficiency.
The wet scrubber achieves removal efficiency above 99%, with effective capture of fine particles (>2.5 μm) and soluble gases. Performance exceeds that of traditional spray scrubbers.
A high gas velocity design reduces equipment size and footprint. The system delivers higher treatment capacity within limited installation space.
Designed to handle high solid content solutions (up to 20%) and viscous dust. The structure minimizes blockage risks in pipelines and nozzles, supporting stable long-term operation.
The system integrates multiple processes, including gas quenching, dust removal, acid gas absorption, and oxidation, reducing the need for separate equipment.
Optimized internal structure lowers water usage by 30–50% compared to conventional scrubbers. Heat recovery and condensation features further improve energy efficiency.
The system adapts to 50%–120% load fluctuations, making it suitable for variable operating conditions and complex industrial processes.
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