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Chlorine Disinfection System

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Chlorine dosing systems with standard flow and ORP control, designed for precise and efficient disinfection across various capacities, operating pressures, and industrial or municipal applications.

Delivery & Availability:
Typically 10-21 working days – excluding furniture and heavy/bulky equipment. Please contact us for further information.
Brands:: HSC

Description

Chlorine dosing units are used to oxidize oxidizable substances such as nitrite, iron, manganese in water and to disinfect contaminants such as bacteria and viruses.

Our dosing systems are designed as standard flow control and redox control. Pump selection is made by us according to the capacity to be disinfected. All pump models with different capacities and operating pressures are worked with stock.

A Chlorine Disinfection System is a method used to disinfect water, wastewater, or other fluids by adding chlorine or chlorine-based compounds. It is widely used in municipal water treatment, industrial applications, and swimming pools to kill bacteria, viruses, and other harmful microorganisms.

Key Components of a Chlorine Disinfection System
  1. Chlorine Source
    • Gas Chlorine (Clâ‚‚) – Highly effective but requires special handling due to toxicity.
    • Sodium Hypochlorite (NaOCl) – Liquid bleach, commonly used in municipal and industrial water treatment.
    • Calcium Hypochlorite (Ca(OCl)â‚‚) – Solid form, used in smaller-scale applications like swimming pools.
    • Chlorine Dioxide (ClOâ‚‚) – More effective against certain pathogens but requires onsite generation.
  2. Feed System
    • Includes pumps, injectors, and flow meters to control the dose of chlorine added to the water.
  3. Mixing & Contact Chamber
    • Ensures proper mixing of chlorine with water and provides enough contact time for disinfection.
  4. Residual Monitoring & Control
    • Sensors and analyzers measure chlorine residuals to maintain effective disinfection without overdosing.
  5. Dechlorination System (if required)
    • Used in wastewater treatment to remove excess chlorine before discharge, usually with sulfur-based chemicals (e.g., sodium bisulfite, sulfur dioxide).
Advantages of Chlorine Disinfection
  • Highly effective against bacteria and viruses
  • Provides residual protection in the distribution system
  • Cost-effective and widely available

 

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DescriptionShipped From Abroad Chlorine dosing systems with standard flow and ORP control, designed for precise and efficient disinfection across various capacities, operating pressures, and industrial or municipal applications.
Delivery & Availability: Typically 10-21 working days – excluding furniture and heavy/bulky equipment. Please contact us for further information.
Shipped From Abroad Ozone is an extremely powerful disinfection agent used for improving the taste, color, and odor of drinking water, eliminating bacteria and viruses, removing organic matter and micro-pollutants, and oxidizing iron and manganese. In addition to providing disinfection, ozone also enhances the taste and odor quality of water. However, due to its high production cost, it is generally more suitable for large-capacity facilities.
Delivery & Availability: Typically 10-21 working days – excluding furniture and heavy/bulky equipment. Please contact us for further information.
ContentChlorine dosing units are used to oxidize oxidizable substances such as nitrite, iron, manganese in water and to disinfect contaminants such as bacteria and viruses. Our dosing systems are designed as standard flow control and redox control. Pump selection is made by us according to the capacity to be disinfected. All pump models with different capacities and operating pressures are worked with stock. A Chlorine Disinfection System is a method used to disinfect water, wastewater, or other fluids by adding chlorine or chlorine-based compounds. It is widely used in municipal water treatment, industrial applications, and swimming pools to kill bacteria, viruses, and other harmful microorganisms.
Key Components of a Chlorine Disinfection System
  1. Chlorine Source
    • Gas Chlorine (Clâ‚‚) – Highly effective but requires special handling due to toxicity.
    • Sodium Hypochlorite (NaOCl) – Liquid bleach, commonly used in municipal and industrial water treatment.
    • Calcium Hypochlorite (Ca(OCl)â‚‚) – Solid form, used in smaller-scale applications like swimming pools.
    • Chlorine Dioxide (ClOâ‚‚) – More effective against certain pathogens but requires onsite generation.
  2. Feed System
    • Includes pumps, injectors, and flow meters to control the dose of chlorine added to the water.
  3. Mixing & Contact Chamber
    • Ensures proper mixing of chlorine with water and provides enough contact time for disinfection.
  4. Residual Monitoring & Control
    • Sensors and analyzers measure chlorine residuals to maintain effective disinfection without overdosing.
  5. Dechlorination System (if required)
    • Used in wastewater treatment to remove excess chlorine before discharge, usually with sulfur-based chemicals (e.g., sodium bisulfite, sulfur dioxide).
Advantages of Chlorine Disinfection
  • Highly effective against bacteria and viruses
  • Provides residual protection in the distribution system
  • Cost-effective and widely available
 
Ozone is a special state of oxygen. It is obtained by exposing the oxygen in the air to an electric current at very high voltage. Pure oxygen is also used for ozone production. Ozone is a very strong disinfectant and is used in improving taste, color and odor in drinking water, removing bacteria and viruses, oxidation of organic matter, micro pollutants, iron and manganese. Besides providing disinfection, ozone also has the benefit of improving the odor and taste of water. Due to its expensive production, it is generally suitable for high capacity facilities.  
Key Components of Ozone Disinfection System
  1. Ozone Generator

    • Produces ozone using either corona discharge or ultraviolet (UV) light.
  2. Air Preparation Unit

    • Uses oxygen concentrators or air dryers to ensure pure ozone generation.
  3. Injection & Mixing System

    • Dissolves ozone into water or distributes it into air for disinfection.
  4. Contact Chamber

    • Ensures proper reaction time for ozone to eliminate contaminants.
  5. Ozone Destruction Unit

    • Converts excess ozone into oxygen for safety.

Advantages of Ozone Disinfection
  • More effective than chlorine against bacteria, viruses, and protozoa
  • No harmful chemical residues or byproducts
  • Fast disinfection process
  • Eliminates odors and organic contaminants
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