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    Demineralization Plant

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

    Ion exchange technology is used to remove salts (cations and anions) from the water Soluble chemical compounds, when dissolved in water, become ionized; that is their molecules dissociate into....
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    Ion exchange technology is used to remove salts (cations and anions) from the water Soluble chemical compounds, when dissolved in water, become ionized; that is their molecules dissociate into positively and negatively charged components called ions. Consider common table salt, sodium chloride. In its solid form, this compound consists of one sodium atom (Na) and one chlorine atom (Cl) tightly coupled together (NaCl). When dissolved in water, however, the compound splits into two ions, Na and Cl.
    Ion Exchange
    A process in which Contaminant ions are exchanged from water is called ion exchange. This process occurs in ion exchange resin Initially, resin is loaded with hydrogen (H ) ion for cations and hydroxide (OH-) ion for anions. As water passes through the resin, the contaminant ions in the water displace the loaded ions from the sites on the resin. This is because the resin has a greater affinity for the contaminant ions. Affinity for most resins is based loosely on ionic size and charge
    Regeneration
    Over a period of time most of the cation resin gets converted into Ca, Mg, Na form and it has no Hydrogen Ions (H ) to replace Ca, Mg, Na ions and the anion resin gets converted into Cl, SO4, SiO2 form and it has no Hydroxyl Ions (OH-) to replace Cl, SO4, SiO2 ions.. This is called the resin exhaustion or end of service cycle. The exhausted resin has to be brought back into Hydrogen (H ) Hydroxyl (OH-) form to continue the process and use it again and again.
    The procedure of converting exhausted resin into Hydrogen (H ) Hydroxyl (OH-) form is called regeneration
    Separate Bed DM Systems
    Ion exchange occurs across at least two different columns. The first is a cation column, which is filled with resin loaded with positive hydrogen ions (H ). As water passes through this column, the positively charged impurities in the water are exchanged for the hydrogen ions A similar exchange takes place in the second column, the anion column. This column is filled with resin loaded with negative hydroxide ions (OH-). As the now cation-free water from the cation column passes through, any negatively charged contaminants are removed from the water and replaced by hydroxide ions from the resin. The water now has a neutral pH. hydroxide [OH-] and hydrogen [H ] ions exchanged in the columns combine, forming water [H2O)
    Mixed Bed Systems
    In a Mixed Bed System water is purified by removing all ions in one pass through an ion exchange bed. The bed consists of cation and anion resins in mixed condition, so that ions are actually removed in the same two step ion exchange process. All the traces of Cations and Anions of the dissolved solids and silica in the water are replaced by Hydrogen ion (H) and Hydroxyl Ion (OH-) respectively. We get very high purity demineralized water at the outlet of the MB.

     

     



    Specifications for DM Plants

     

    MODELSNAS DM 30NAS DM 60NAS DM 80NAS DM 100
    Resin Qty.30 Ltr60 Ltr80 Ltr100 Ltr
    OBR @ 100 ppm ionic Load12,000 ltrs24,000 ltrs32,000 ltrs40,000 ltrs
    Min. Working Pr.2.0Kg/cm²2.0 Kg /cm²2.0 Kg /cm²2.0 Kg/cm²
    Max. Working Pr.4.0Kg/cm²4.0 Kg /cm²4.0 Kg /cm²4.0 Kg/cm²
    VesselFRPFRPFRPFRP
    Resin MakeThermax/ Ion ExchangeThermax/ Ion ExchangeThermax/ Ion ExchangeThermax/ Ion Exchange
    Reagenerant Qty Acid(30%) & Alkali(98%)HCL / 9 Kg NaOH / 3 KgHCL / 18 Kg NaOH / 6 KgHCL / 24 Kg NaOH / 8 KgHCL / 30 Kg NaOH / 10 Kg
    Type of Valve20NB20NB20 or 25 NB25 or 40NB TM
    Max. Flow Rate. m3/Hr1.5 m3 / Hr.1.5 m3 / Hr.1.5 m3 / Hr.2.5 m3 / Hr.

     

    MODELSNAS DM 150NAS DM 200NAS DM 250NAS DM 330
    Resin Qty.150 Ltr200 Ltr250 Ltr330 Ltr
    OBR @ 100 ppm ionic Load60,000 ltrs80,000 ltrs1 Lacs ltrs1.32 Lacs ltrs
    Min. Working Pr.2.0 Kg/cm²2.0 Kg /cm²2.0 Kg /cm²2.0 Kg/cm²
    Max. Working Pr.4.0 Kg/cm²4.0 Kg /cm²4.0 Kg /cm²4.0 Kg/cm²
    VesselFRPFRPFRPFRP
    Resin MakeThermax/ Ion ExchangeThermax/ Ion ExchangeThermax/ Ion ExchangeThermax/ Ion Exchange
    Reagenerant Qty Acid(30%) & Alkali(98%)HCL / 45 Kg NaOH / 15 KgHCL / 60 Kg NaOH / 20 KgHCL / 75 Kg NaOH / 25 KgHCL / 100 Kg NaOH / 35 Kg
    Type of Valve25 or 40 NB TM40 NB TM/SM40 NB SM40 NB SM
    Max. Flow Rate. m3/Hr3 m3 / Hr.3 m3 / Hr.3-4 m3 / Hr.3-6 m3 / Hr 4-8 m3 /Hr.

     

    MODELSNAS DM 500NAS DM 750NAS DM 1000
    Resin Qty.500 Ltr750 Ltr1000 Ltr
    OBR @ 100 ppm ionic Load2 Lacs ltrs3 Lacs ltrs4 Lacs ltrs
    Min. Working Pr.2.0Kg/cm²2.0 Kg /cm²2.0 Kg /cm²
    Max. Working Pr.4.0Kg/cm²4.0 Kg /cm²4.0 Kg /cm²
    VesselFRPFRPFRP
    Resin MakeThermaxThermaxThermax
    Reagenerant Qty Acid(30%) & Alkali(98%)HCL / 150 Kg NaOH / 50 KgHCL / 225 Kg NaOH / 75 KgHCL / 300 Kg NaOH / 100 Kg
    Type of Valve40 NB SM40 NB SM40 NB SM
    Max. Flow Rate. m3/Hr4 m3 / Hr.2.0Kg/cm.2.0 Kg /cm².

     

     

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