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  2. ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤‍⁢‌⁢⁠‌‍
  3. ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢‌⁢⁣‍⁠‍

    ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤⁣⁣⁢⁠‌

    ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢‌⁢‌‍⁠⁢‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤‍⁢‌
    ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁣⁢‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤⁣‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤‌⁢‍⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤‍⁢⁣‍⁢‍⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢⁢‌⁣⁠⁢‍⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁣⁣‍⁠⁣‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢⁤‍
    ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢‌⁢‌
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      ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤⁠⁣‌‍⁠‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠‍⁢‌⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁠‍‌⁣‍⁠‍⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤⁠‌‍⁠‍‌‍

      ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌‍‌⁣⁢⁢⁠‍⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤‌⁢‍‌‍⁢‍⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁣⁢‌‍‌⁠‍

    1. ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠⁣‍
    2. ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌‍‌⁠‍⁤⁣⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢⁠⁠‍⁠‍⁠‍
      ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁣⁢‍⁤⁢‍⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢‌⁢‍‌⁢⁠‍
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    3. ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢‌⁣
    4. ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢‍⁠‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠⁤‍

      ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠‍⁠‍⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁣‌‍⁢‌⁣
      1. ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢‍⁢‍
      2. ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁣⁢‌‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤‌⁢‌‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠‍⁢‌
          ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁠⁢‌⁣‍⁠‍
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        Location:Home > Products & Services > Decolorization and regeneration equipment
        Decolorization and regeneration equipment

        1. Multi-unit continuous decolorization equipment with array valves



         Equipment principle


             It is the same with common decolorization equipment. Activated carbon in our equipment is filled in the column and it is regenerated after use. More importantly, the activated carbon in the entire system is divided into more units for more detailed operation. The multi unitization of the system is just dividing the large fixed bed into many manageable units that are respectively loaded into each small activated carbon column. 



        Array valves


             Many valves and some pipelines are linked together to become a part of the decolorization system, which is called valve array. We can switch a certain valve to realize the corresponding functions. 



        Multi-unit


          The activated carbon in the entire system is divided into more units for more detailed operation.      



         Equipment features


        1. Multi-unit continuous decolorization equipment with array valves can be truly continuous operation without pump shutdown. It is more stable and safer.

        2. Fully automated operation reduces human factors. The chromaticity, pressure, liquid level can be monitored online so the operation is safer and more reliable.

        3. The used valve from European brands is reliable and the system is pretty safe. 

        4. Equipment maintenance is simple and economical, and the average operating cost is low.

        5. Our team has rich experience both in installation and commissioning on the site. In addition, our company has perfect service system after sale.




         Application


        Multi-unit continuous decolorization equipment with array valves used in lactic acid



        image.png



         Multi-unit continuous decolorization equipment with array valves is widely used in the fields as follows


        -Sugar industry

        starch sugar, including glucose, dextrose monohydrate, fructose, crystalline fructose, F42, F55, maltose, dextrin, etc.; xylose.

        -Chemical industry

        Organic acids include L-lactic acid, citric acid, VC, monosodium glutamate, and various amino acids, such as lysine, L-phenylalanine, leucine, methionine, etc.

        -Food industry

        Stevia sugar, sorbitol, and xylitol and sodium erythorbate, etc.

        -Pharmaceutical industry

        antibiotics, etc.

        -Thermoelectric industry

        water treatment, etc.



        Oushangyuan (Tianjin) Co., Ltd.

        • 022 - 2858 5959
          18602219102(Manager Ma)
        • osychina@https://zndrqcj.com
        • Intersection of Huike Road and Jingrong Road, Jinnan District, Tianjin.

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        ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌‍⁠⁣‍‌⁢‍⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢⁤‍⁠⁢⁠‍⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌‍⁢⁠‍⁠‍⁠‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌‍⁢⁠‍⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢⁢⁠‍‌⁠‌‍

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        2. ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤‍⁢‌⁢⁠‌‍
        3. ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢‌⁢⁣‍⁠‍

          ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤⁣⁣⁢⁠‌

          ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢‌⁢‌‍⁠⁢‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤‍⁢‌
          ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁣⁢‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤⁣‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤‌⁢‍⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤‍⁢⁣‍⁢‍⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢⁢‌⁣⁠⁢‍⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁣⁣‍⁠⁣‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢⁤‍
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            ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤⁠⁣‌‍⁠‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠‍⁢‌⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁠‍‌⁣‍⁠‍⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤⁠‌‍⁠‍‌‍

            ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌‍‌⁣⁢⁢⁠‍⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤‌⁢‍‌‍⁢‍⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁣⁢‌‍‌⁠‍

          1. ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠⁣‍
          2. ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌‍‌⁠‍⁤⁣⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢⁠⁠‍⁠‍⁠‍
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            ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢‍⁢‍
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          3. ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢‌⁣
          4. ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢‍⁠‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠⁤‍

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            1. ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢‍⁢‍
            2. ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁣⁢‌‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤‌⁢‌‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠‍⁢‌
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