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Onsite Sodium Hypochlorite Generator For Drinking Water From Weak Brine Water

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    Buy cheap Onsite Sodium Hypochlorite Generator For Drinking Water From Weak Brine Water from wholesalers
     
    Buy cheap Onsite Sodium Hypochlorite Generator For Drinking Water From Weak Brine Water from wholesalers
    • Buy cheap Onsite Sodium Hypochlorite Generator For Drinking Water From Weak Brine Water from wholesalers
    • Buy cheap Onsite Sodium Hypochlorite Generator For Drinking Water From Weak Brine Water from wholesalers

    Onsite Sodium Hypochlorite Generator For Drinking Water From Weak Brine Water

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    Brand Name : GEEMBLUE
    Model Number : GBI-500-NACLO
    Certification : ISO9001 CE
    Price : USD 17000 ~20000 /set
    Payment Terms : L/C, T/T, Western Union, MoneyGram
    Supply Ability : 20 set/ month
    Delivery Time : 40-45 work days
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    Onsite Sodium Hypochlorite Generator For Drinking Water From Weak Brine Water

    Onsite Sodium Hypochlorite Generator For Drinking Water From Weak Brine Water


    Product Description

    0.8% Sodium hypochlorite generation system is producing sodium hypochlorite onsite through 3% brine electrolysis(salt and water after saturated), and the whole system is a combination of Softening unit, Filtration unit, Salt dissolving unit, Online proportioning unit, electrolytic unit, rectifier power supply, automatic control systems, storage and dosing unit, etc.

    Sodium Hypochlorite is widely used in many water industries. The most applied in drinking water disinfection, on site generation of Sodium hypochlorite is more safely than feeding chlorine gas. Transporting Chlorine gas tank is risky to leakage and lead to explosion.


    Generation principle:

    The sodium chloride contained in seawater or brine flow between sets of electrodes (anodes and cathodes) in an electrolyzer.

    The chemical reactions which take place in the electrolyzer between chlorine and Sodium hydroxide produced by electrolysis.
    In the electrolyzer the sodium chloride is completely dissociated into the ions Na+ and Cl-, causes the following electrochemical and chemical reactions:

    Electrode reaction:

    at the anode: 2Cl- - 2e → Cl2
    at the cathode: 2H+ + 2e → H2
    Solution reaction:

    2NaOH + Cl2 → NaCl + NaClO + H2O

    Overall reaction as follow:

    NaCl + H2O + DC →NaClO + H2


    Process

    1. Influent water is passed through a water softener.

    2. Using softened water to dissolve the salt in a tank to form a concentrated brine solution.

    3. Diluted into 2.5%-3% after filtered (If use sea water as raw material, it will be treated before electrolysis)

    3. The diluted brine is electrolyzed to a 0.8% solution of sodium hypochlorite.

    4. The 0.8% hypochlorite solution flows into a storage tank.
    5. The sodium hypochlorite solution will be injected into the pipe by metering pump.

    6. The residual chlorine detector will monitor residual chlorine and return feedback to the PLC center.

    7. According to preset standards, the PLC Center will adjust the speed of the dosing pump.


    Compared with commercial sodium hypochlorite disinfection methods

    Disinfection methodOn-site
    Sodium hypochlorite
    Commercial
    Sodium hypochlorite
    product

    It produce a solution of

    strengths 0.8% and the only
    raw materials required are
    salt, water and electricity

    By-product of the chlor-alkali industry, with a concentration of 10%, containing an excess of alkali and harmful impurities
    AttenuationWithout attenuationAttenuation of 5% per day, and also cause excessive Chlorine in drinking water
    SafetySafety disinfection method, environmental non-toxic.Dangerous articles. Risk during transport and storage and easily caused degradable when storage. Short time storage and high transport costs.
    Disinfection by-productsDue to weak in chlorine oxidation ability, three material are less, and combined additive, ammonia, potassium permanganate, less by-products

    The raw material is

    Industrial salt, which contain harmful impurities in drinking water and it is bad for health.

    Economic analysisThe investment is a little higher in the early time, but the operation cost is low, and after three or four years it can pay your investment money backEquipment cost is low, but the high cost of running, and the running costs cannot be controlled
    Dosing AccuracyDosing liquid low concentration, can accurately control the amount of chlorineHigh concentration, difficult to precisely control the amount of chlorine

    Process

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