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    Water Demineralisation Plant

    • Supply TypeManufacturer, Exporter, Supplier, Retailer
    • Preferred Buyer Location All over the world

    We are specialized in offering quality Water Demineralisation Plant, widely used in many industries for Demineralisation of water. There is an ion-exchange vessel in it that holds the required....
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    • calendar Member Since 14 Years
    • building Nature of Business Retailer
    • Year of Establishment 2001

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    We are specialized in offering quality Water Demineralisation Plant, widely used in many industries for Demineralisation of water. There is an ion-exchange vessel in it that holds the required ion-exchange resin through which water is allowed to pass. In this Water Demineralisation Plant the selective ions in the water are exchanged with ions or radicals which are loosely held by the resin. This Water Demineralisation Plant is much acknowledged for its high performance sturdy construction and durability. Our Water Demineralisation Plant allows the water to pass through several vessels or a mixed bed vessel so that both positive and negative ions are removed and water is demineralization. Features of Water Demineralisation Plant :

    • Sturdy construction
    • High performance
    • Perfect finish
    • Durable
    • Fast action
    • Resistance to corrosion
      • Working of the Water Demineralisation Plant :Two-bed Deionization : There is two-bed deionizer containing two vessels in it. One vessel contains a cation-exchange resin in the hydrogen (H+) form and the other vessel contains an anion resin in the hydroxyl (OH-) form. The Water flows through the cation columns, where for hydrogen ions, the cations are exchanged. Water is electrically balanced and for every monovalent cation, e.g. Na+, one hydrogen ion is exchanged and for every divalent cation, e.g. Ca2+, or Mg2+, two hydrogen ions are exchanged. Same steps are followed for considering anion-exchange. Desalinized water then flows through the anion column. This time, all the negatively charged ions are exchanged. Hydroxide ions are then combined with the hydrogen ions to form water (H2O).


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