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Disinfection and electrolysis salt water sodium hypochlorite generator for water plants

NegotiableUpdate on 05/19
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Overview

At present, the commonly used disinfection methods in water treatment include chlorine dioxide disinfection, ozone disinfection, ultraviolet disinfection, etc. Due to its advantages of good disinfection effect, low investment and operating costs, and mature technical processes, it has been widely used in water treatment. However, in recent years, due to concerns about transportation and storage safety, as well as concerns about chlorine disinfection by-products, especially in the operation and management of water plants, it is necessary to frequently conduct tedious work such as chlorine leakage drills, safety approvals, and operation management,

Product Details

Disinfection and electrolysis salt water sodium hypochlorite generator for water plants

Disinfection and electrolysis salt water sodium hypochlorite generator for water plants

1

During the electrolytic reaction process of the equipment, the effective chlorine content should be kept within one percent, because if the chlorine content is too high, it will not only affect the reaction results of the treatment, but also the service life of the electrode.


2

In daily use, due to the high content of calcium and iron ions in water in some areas, impurities such as CACO3 and Fe (oH) 3 may appear during electrolysis. These impurities in water may cause short circuits between the anode and cathode or even breakdown of the electrode. So, users should regularly clean their equipment according to the local water quality situation, keep the equipment clean, and avoid the accumulation of impurities.


3

When cleaning the titanium anode used in the sodium hypochlorite generator, be sure to handle it gently. When cleaning, use a brush to gently sweep away surface dirt and avoid scratching with sharp objects to avoid damaging the surface coating of the titanium anode.


4

During the operation of the equipment, it is necessary to frequently observe whether the point current and voltage of the equipment are within the specified range. Timely monitor the flow of hydrochloric acid solution and cooling water to prevent blockage.


5

After running for twenty hours, the equipment needs to be shut down for inspection. The saltwater valve of the equipment should be closed, the gas in the electrolytic cell should be emptied, and the flushing valve should be opened for flushing. After flushing, close the flushing valve and drain it, open the saltwater valve, and prepare the equipment for start-up.


6

The sodium hypochlorite generator should be installed in a well ventilated and well lit indoor environment during installation, and the surrounding area should be kept clean without any debris piled up. The hydrogen exhaust pipeline should be placed outdoors, and open flames or other sources of ignition should be avoided around it. Smoking and open flames are strictly prohibited indoors.

Main technical parameters:

2. Every2Hproduction8L(6000mg/L)Disinfectant solution, power consumption0.27Degree, precious metal electrode, concentration adjustable in three levels;

4. Sterilization effect: The sterilization rate against viruses such as Escherichia coli, Staphylococcus aureus, hepatitis B surface antigen, Bacillus subtilis var. niger spores, anthrax spores, etc. reaches99.99%-100%Various viruses such as Marek's disease, Newcastle disease, transmission, bursal disease, foot-and-mouth disease, swine blisters, and porcine erysipelas have99%-100%The bactericidal effect;

6. Shelf life of three years, lifetime maintenance service.


During the electrolytic reaction process of the equipment, the effective chlorine content should be kept within one percent, because if the chlorine content is too high, it will not only affect the reaction results of the treatment, but also the service life of the electrode.


2

In daily use, due to the high content of calcium and iron ions in water in some areas, impurities such as CACO3 and Fe (oH) 3 may appear during electrolysis. These impurities in water may cause short circuits between the anode and cathode or even breakdown of the electrode. So, users should regularly clean their equipment according to the local water quality situation, keep the equipment clean, and avoid the accumulation of impurities.


3

When cleaning the titanium anode used in the sodium hypochlorite generator, be sure to handle it gently. When cleaning, use a brush to gently sweep away surface dirt and avoid scratching with sharp objects to avoid damaging the surface coating of the titanium anode.


4

During the operation of the equipment, it is necessary to frequently observe whether the point current and voltage of the equipment are within the specified range. Timely monitor the flow of hydrochloric acid solution and cooling water to prevent blockage.


5

After running for twenty hours, the equipment needs to be shut down for inspection. The saltwater valve of the equipment should be closed, the gas in the electrolytic cell should be emptied, and the flushing valve should be opened for flushing. After flushing, close the flushing valve and drain it, open the saltwater valve, and prepare the equipment for start-up.


6

The sodium hypochlorite generator should be installed in a well ventilated and well lit indoor environment during installation, and the surrounding area should be kept clean without any debris piled up. The hydrogen exhaust pipeline should be placed outdoors, and open flames or other sources of ignition should be avoided around it. Smoking and open flames are strictly prohibited indoors.