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High-Quality Activated Carbon for Water Purification from China Suppliers and Factory - Air Filtration & Industrial Use
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High-Quality Activated Carbon for Water Purification from China Suppliers and Factory - Air Filtration & Industrial Use

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Discover our premium activated carbon, a top choice among China suppliers and factories, designed for superior adsorption capacity and effective purification across various applications. Sourced from high-grade coconut shell or coal, our activated carbon features a vast microporous structure, optimizing surface area for efficient contaminant removal. Perfect for water treatment systems, air and gas purification, gold recovery, food and beverage processing, and medical applications. Available in granular (GAC), powdered (PAC), and pelletized forms. Rely on our reliable, high-performance activated carbon solutions to meet your essential purification needs.

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    Product Description

    Our activated carbon is a highly porous form of carbon engineered through a controlled activation process (physical or chemical) to create an extensive network of microscopic pores. This results in an exceptionally large surface area (typically 500-1500 m²/g), granting it outstanding adsorption properties. It effectively attracts and holds a wide range of impurities, chemicals, odors, and contaminants through physical adsorption and catalytic reduction. We offer various raw material bases—including coconut shell, coal, and wood—each optimized for specific performance characteristics in filtration and purification applications.
    Wastewater treatment application
    Activated carbon raw material

    Specification

    Raw Material Coconut Shell, Coal, Wood (Specify as needed)
    Form Granular (GAC), Powdered (PAC), Pelletized, Extruded
    Iodine Number 800-1100 mg/g (indicative of micropore content)
    Surface Area 500-1500 m²/g (BET method)
    Moisture Content ≤ 5% (as packed)
    Ash Content ≤ 5% (varies by base material)
    Particle Size Customizable (e.g., 4x8, 8x16, 12x40 mesh for GAC; 200-325 mesh for PAC)
    pH Value Neutral range (can be adjusted)
    Packaging Density Varies by form and grade
    Note: Detailed technical data sheets with precise specifications are available for each product grade upon request.
    Tap water purification system
    Activated carbon specification testing

    Key Features & Benefits

    • Exceptional Adsorption Capacity: High surface area and tailored pore structure for efficient removal of contaminants.
    • Versatile Material Options: Coconut shell for vapor phase and gold recovery; coal for liquid phase and broad contaminant removal; wood for specific decolorization.
    • High Purity & Quality: Consistent production ensures reliable performance and long service life in filters.
    • Customizable Forms & Sizes: Available in GAC, PAC, pellets, etc., with sieving to meet specific system requirements.
    • Cost-Effective Solution: Provides high value through efficiency, long lifespan, and reduced waste.

    Application

    Water Treatment
    Drinking water purification, wastewater treatment, groundwater remediation, aquarium filters, point-of-use filters.
    Air & Gas Purification
    VOC removal, solvent recovery, odor control, HVAC systems, gas masks, industrial emission control.
    Food & Beverage Industry
    Decolorization, deodorization, purification of sweeteners, edible oils, alcoholic beverages.
    Metallurgical Industry
    Gold and precious metal recovery (Carbon-in-Pulp/Leach processes).
    Chemical & Pharmaceutical
    Catalyst support, purification of chemicals and intermediates, solvent recovery.
    Automotive
    Evaporative emission control systems in vehicles.
    Medical
    Used in hemoperfusion and as an antidote for certain poisonings.

    Regular packing

    Standard Packaging
    • Bags: 25 kg woven bags with plastic liner.
    • Big Bags: 500 kg or 1000 kg Flexible Intermediate Bulk Containers (FIBCs).
    Special Packaging
    • Steel drums or carton boxes for smaller, premium quantities.
    • Custom packaging available upon request to prevent contamination and moisture absorption during transit.

    How to use

    1
    System Design
    Select the appropriate form (GAC/PAC), base material, and particle size based on the target contaminant and contact system (e.g., fixed bed, fluidized bed).
    2
    Loading
    For fixed-bed filters, load GAC to the recommended bed depth. Ensure uniform distribution to prevent channeling.
    3
    Pre-treatment (if required)
    Rinse GAC with clean water to remove fines before initial use in liquid applications.
    4
    Operation
    Pass the fluid (air or water) through the carbon bed at the designed flow rate. Monitor pressure drop and effluent quality.
    5
    Replacement/Regeneration
    Replace carbon upon exhaustion (breakthrough). Spent GAC can often be thermally reactivated for reuse.
    How to use carbon filter diagram
    Carbon replacement process

    Product Advantages

    • Proven Effectiveness: Removes a vast array of organic compounds, chlorine, odors, and discoloration.
    • Material Specificity: Choosing the right base material (coconut/coal/wood) optimizes performance for your specific application.
    • Long Service Life: High adsorption capacity translates to longer intervals between change-outs, reducing operational costs.
    • Safe & Natural: An inert, non-toxic filtering medium safe for use in potable water and food processing.
    • Sustainable Options: Coconut shell-based carbon is made from renewable resources.

    Storage Method

    Store in a cool, dry, and well-ventilated warehouse on pallets. Keep bags sealed tightly to prevent adsorption of moisture and odors from the atmosphere, which can prematurely saturate the carbon. Store away from strong oxidizing agents, volatile chemicals, and direct sunlight. Use a first-in, first-out (FIFO) inventory system.

    FAQ

    Q1: What is the difference between Coconut Shell, Coal, and Wood-based Activated Carbon?
    A: The primary difference lies in their pore structure and best applications. Coconut shell carbon has a high microporosity, ideal for gas/vapor adsorption and gold recovery. Coal-based carbon has a broader mix of micropores and mesopores, making it excellent for general liquid-phase purification (water treatment). Wood-based carbon often has more macropores, suitable for decolorization of liquids.
    Q2: How do I choose between Granular (GAC) and Powdered (PAC) Activated Carbon?
    A: GAC is used in fixed-bed filters (like home water filters) for continuous flow processes. PAC is typically dosed into a process stream (like wastewater) as a slurry, then separated after contact. GAC is for dedicated filtration systems; PAC is often for batch treatment or specific contaminant spikes.
    Q3: What does the Iodine Number indicate?
    A: The Iodine Number is a standard test that measures the microporosity (pores < 2 nm) of the carbon. A higher iodine number (e.g., >1000) generally indicates a greater capacity to adsorb small molecules, like those found in gases and some chemicals.
    Q4: How long does activated carbon last? When should it be replaced?
    A: Service life depends entirely on the contaminant load and flow rate. It lasts until it becomes "saturated" and breakthrough occurs. In home water filters, this can be 3-6 months. In industrial settings, it's monitored by effluent testing. It should be replaced when the desired purity level can no longer be maintained.
    Q5: Can spent activated carbon be regenerated?
    A: Yes, thermally. Spent carbon can often be sent to specialized facilities for high-temperature thermal reactivation, which restores its adsorption capacity, making it a more sustainable option compared to disposal. However, this is typically economical only for large volumes of spent GAC.