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Fluoride Removal Integrated System
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Fluoride Removal Integrated System

Groundwater and Drinking Water Fluoride Removal Equipment (Fluoride Filter)

This fluoride removal equipment uses specially activated alumina as the fluoride adsorbent. The fluoride removal process combines acid treatment or pH adjustment of the raw water with adsorption catalysis to achieve high fluoride adsorption performance. It features high-flow recirculation regeneration and rapid neutralization to ensure continuous fluoride removal. The dedicated fluoride removal material serves as the adsorbent, and the tank is made of carbon steel or fiberglass. The filter media is reusable. This equipment represents a new type of fluoride removal device, differing from deionization methods such as electrodialysis and reverse osmosis.

    Advantage

    1: Specially Activated Alumina: The equipment uses specially activated alumina as the adsorbent, which offers fast adsorption speed, high adsorption capacity, minimal pH dependence, and easy desorption. Its performance surpasses that of conventional alumina.

    2: Regeneration Agent: Sodium hydroxide replaces traditional aluminum sulfate as the regeneration agent, eliminating the risk of aluminum ion contamination in the effluent, which could be harmful to human health.

    3: Rapid Regeneration: The use of a circulation regeneration method significantly reduces the regeneration time to under 4 hours.

    4: Enhanced Adsorption Capacity: By adjusting the pH and employing catalytic adsorption processes, the adsorption capacity is greatly increased.

    5: Prevents Issues: The system addresses the "caking" problem and "false fatigue" phenomena associated with standard activated alumina.

    Application of Fluoride Removal Integrated System

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    Industrial and Mining Enterprises: For processing production and operational water.

    Rural Safe Drinking Water: Ensuring safe drinking water in rural areas.

    High Fluoride Water Sources: As a pre-treatment device for systems such as ultrafiltration, nanofiltration, reverse osmosis, ion exchange, mixed beds, and EDI (Electrodeionization) when the raw water has high fluoride content.

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