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    Special resin


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    Product model
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    Special resin
    YKTA-1
    Remove free strong acids from water

    Special resin
    YKTA-2
    Xylose desalination and decolorization

    Special resin
    YKTA-3
    Remove formic acid from formaldehyde; Formaldehyde deacidification

    Special resin
    YKTA-4
    Used for the treatment of water sources with high salt and organic content

    Special resin
    YKTA-5
    Remove sulfate ions

    Special resin
    YKTA-9
    Remove sulfate ions

    Special resin
    YKTA-6
          Remove chloride ions

    Special resin
    YKTB-1
    Excluding carbonates, bicarbonates, and other alkaline salts

    Special resin
    YKTC-2
    Special resin for nitrate removal

    Special resin
    YKTB-2
    Separation and purification of biochemical drugs

    Special resin
    YKTC-1  
    Specialized resin for arsenic removal

    Special resin
    YKTD-1  
    Special resin for silicon removal

    Special resin
    YKTD-2
        Wet metallurgy, extracting uranium

    Special resin
    YKCM-2
      Remove aluminum ions from acid

    Special resin
    YKA100
      Remove ammonia nitrogen resin

    Special resin
    YKA200  
    Remove ammonia nitrogen resin

    Special resin
    YKA301
    Remove iron ions

    Special resin
    YKDS-2
    Removing organic matter from water









    Product classification

    • The special resin series is not limited to general ion exchange or adsorption functions, but is developed for extreme working conditions, high-precision fields, or specific molecular recognition needs; Customization” Material Science. By special chemical modification, pore size cutting, and surface functionalization of polymer skeletons, special resins can achieve precise separation, enrichment, or transformation tasks that traditional materials cannot accomplish in extremely complex fluid systems. 

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    • •   Cutting edge electronic chemistry: dedicated to the preparation of ultrapure water, refining of chemical reagents, and purification of photoresist related materials in the semiconductor industry. 
      •   High end biopharmaceuticals: Solid phase synthesis carriers that assist in the artificial synthesis of peptides and complex antibiotics, as well as deep purification of vaccines. 
      •     New energy materials: involving purification of lithium battery electrolytes, lithium recovery and extraction processes, as well as pretreatment of materials related to hydrogen fuel cells. 
      •     Special catalysis and environmental protection: deep adsorption of persistent organic pollutants that are difficult to treat, as well as environmentally friendly carriers to replace expensive metal catalysts. 


      • Molecular level precise identification: Using molecular imprinting or specific functional group coordination techniques, it has a high affinity for the target product and achieves precise separation. 
      • •   Extreme environmental tolerance: It has excellent resistance to strong acids, alkalis, high temperatures, and strong oxidation, and is suitable for harsh industrial reaction environments such as petrochemicals and metallurgy. 
      • •   Physical structure can be regulated: The pore size distribution can be customized from micropores to macropores according to the molecular weight of the material, ensuring the permeation and diffusion efficiency of large molecular substances. 
      • •   High purity and low leaching: After special post-treatment processes, the organic matter leaching of the resin itself is extremely low, ensuring that it will not cause secondary pollution to downstream high-end products. 

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