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Natural Graphite Production Process for Battery Applications

Zhengzhou Hengyang Industrial Co., Ltd
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    Buy cheap Natural Graphite Production Process for Battery Applications from wholesalers
     
    Buy cheap Natural Graphite Production Process for Battery Applications from wholesalers
    • Buy cheap Natural Graphite Production Process for Battery Applications from wholesalers
    • Buy cheap Natural Graphite Production Process for Battery Applications from wholesalers
    • Buy cheap Natural Graphite Production Process for Battery Applications from wholesalers
    • Buy cheap Natural Graphite Production Process for Battery Applications from wholesalers
    • Buy cheap Natural Graphite Production Process for Battery Applications from wholesalers

    Natural Graphite Production Process for Battery Applications

    Ask Lasest Price
    Brand Name : Hengyang
    Model Number : HC-621
    Certification : ISO9001
    Price : 56200-76100
    Payment Terms : T/T
    Supply Ability : 270 sets/month
    Delivery Time : 20-40 days
    • Product Details
    • Company Profile

    Natural Graphite Production Process for Battery Applications

    Mining:

    Graphite is extracted from natural deposits through surface or underground mining. The raw ore is typically mixed with other materials, requiring further processing.


    Flotation:

    The mined graphite ore undergoes froth flotation, where water and chemicals separate the graphite from impurities. This results in a concentrate containing higher graphite purity.


    Chemical Purification:

    The graphite concentrate is chemically treated (often with acids) to remove remaining impurities. This step increases purity to 99.95% or higher, required for battery-grade graphite.


    Micronization:

    The purified graphite is ground into fine particles to meet the size specifications for battery applications. This improves the material’s suitability for further processing.


    Spheronization:

    The graphite particles are shaped into spherical forms to increase packing density and improve conductivity in the battery anode. Spheronization enhances the material’s electrochemical performance.


    Coating:

    The spherical graphite is coated with a carbon layer, which enhances its conductivity and stability during battery cycling. This coating also protects the graphite from side reactions.


    Thermal Purification:

    In a high-temperature furnace, any remaining impurities are vaporized, achieving ultra-high purity (>99.99%). This step ensures the graphite meets stringent quality requirements for battery applications.

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