Products Description
What is a sodium hypochlorite generator?
A sodium hypochlorite generator is a device used to prepare sodium hypochlorite liquid by electrolysis of salt water. This equipment can produce a stable, a single sodium hypochlorite liquid, easy to preserve. The preparation system of sodium hypochlorite generator is controlled by PLC. can be used to collect the variables of equipment voltage, current and power, can be used to query the curve changes of reserve, material flow, power consumption and the addition of sodium hypochlorite, etc. to ensure safe production and product quality. In addition, the equipment of sodium hypochlorite generator occupies a small actual area, adopts cabinet design, makes it more efficient in space utilization.
The main advantages of sodium hypochlorite generators include:
Data visualization management: through PLC control, to achieve real-time monitoring and management of equipment data, to ensure the safety and efficiency of the production process.
Small floor area: adopts cabinet design, effectively reduces the required space, suitable for various scales of application scenarios.
Stable production of sodium hypochlorite liquid: The quality of sodium hypochlorite liquid produced by is stable, suitable for a variety of disinfection and sterilization applications.
Sodium hypochlorite in the process of sterilization, kill virus, role not only in the cell wall, virus shell, and don't take charge because of the small molecule, , can penetrate into the bacteria , virus) and bacteria in the body (, , body protein) nucleic acid oxidizing reaction, enzyme and , to kill the pathogenic microorganisms. The occurrence process of sodium hypochlorite can be expressed by chemical equation, the total reaction is NaCl + H2O → NaClO + H2↑.
The working flow of the whole device includes electrolysis of salt water to prepare sodium hypochlorite liquid, the process is realized by electrolytic reaction, in which 2Cl- - 2e → Cl2 reaction occurs at the anode, and 2H+ + 2e → H2 reaction occurs at the cathode, . The reaction of is 2NaOH + Cl2 → NaCl + NaClO + H2O



| Product Name | Ruthenium metal oxide coated titanium electrode for electrolysis cell of swimming pool replacement |
| Substrate | Titanium Grade 1, Titanium Grade 2 |
| Coating | 1. Ruthenium-Titanium Anode 2. Ruthenium-Iridium Titanium Anode 3. Iridium-Tantalum Titanium Anode 4. Iridium-Tantalum-Tin Titanium Anode 5. Iridium-Platinum Titanium Anode 6. Platinum Titanium Anode 7. Lead dioxide Titanium Anode |
| Coating Thickness | 6~20micron--Mixed precious metal oxide coating 0.5~5micron--Platinum coating |
| Current density | < 20000 A/M2 |
| PH value | 1-14 |
| Content of Florin Ions | <50mg/L |
| Enhanced life | 40k mA/M2, 1 mol/L H2SO4, h=1200 h |
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Company profile

Our company is located in China Titanium Valley (Titanium City), a national new materials industry base. We are a private enterprise specializing in electrochemical industry titanium anodes, civilian titanium materials, and titanium products. The company focuses on the development and promotion of new products, including ruthenium iridium titanium anode, ruthenium iridium tin titanium anode, iridium tantalum titanium anode, platinum coated titanium anode, titanium based lead dioxide anode, etc. The products are widely used in industries such as chemical, electric metallurgy, water treatment, organic synthesis, cathodic protection, electroosmotic analysis, metal foil production, aluminum foil transformation, environmental protection, electroplating, etc., and are exported to countries and regions such as the United States, the United Kingdom, South Korea, Singapore, etc. The company relies on the strong industry resources of "China Titanium Valley", strong research and manufacturing capabilities in non-ferrous metals, and a complete titanium industry manufacturing chain. It has established a research and development, production, processing, and sales center in Baoji, Titanium Valley, to provide customers with comprehensive services.
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Titanium hypochlorite anode is a commonly used anode material in the industrial field, typically used in electrolysis processes. The manufacturing process of titanium hypochlorite anode involves reacting titanium metal with hypochlorite to generate electrode materials with specific properties and structures.
The titanium hypochlorite anode exhibits high electrochemical activity and stability, thus demonstrating excellent electrocatalytic performance during electrolysis. It can effectively reduce energy consumption and improve electrolysis efficiency in the electrolysis process, and is therefore widely used in industrial production.


In addition, titanium hypochlorite anodes also have good corrosion resistance and mechanical strength, which can adapt to various harsh industrial environments. It has a long service life and low maintenance costs, so it can save a lot of costs for enterprises in long-term use.
In summary, titanium hypochlorite anode is an efficient, stable, and durable anode material that plays an important role in the electrolysis industry.
Protective electrode:
(1) Cleaning electrode plate: The hardness of the raw water can affect the scaling of the electrode plate. When the electrode plate scales, the tank voltage increases and the current decreases significantly, which will affect production and increase power consumption. According to the hardness of the raw water, the electrode plates should be cleaned regularly. When the total hardness of the water is below 350mg/l (CaC03 meter), it should be cleaned once every 18-20 days. Reduce the cleaning cycle when the hardness is high. The cleaning method is as follows: remove the top plate of the electrolytic cell, remove the scaled electrode plate (cathode plate), soak it in dilute hydrochloric acid (1 part industrial hydrochloric acid and 4 parts water), wait for the scale on the electrode plate to dissolve (about a few minutes), take out the electrode plate and rinse it with water before use. Waste acid for next use (use a soft bristled brush to clean the electrode plates). Rinse the anode plate with clean water, and pay attention to the installation position of the positive and negative plates when installing the electrode plates. Connect the positive and negative plates in series, and it is strictly prohibited to connect them incorrectly. (The surface of the anode plate is coated!) Avoid friction and impact to prevent damage to the surface coating of the electrode plate. Maintain parallel spacing between the plates during installation.
(2) When passivation is found on the electrode plate: the surface coating is damaged, the slot voltage increases, and the current significantly decreases, a new electrode plate should be replaced.
(3) Regularly wipe the anode and cathode wiring ears and screws, and replace them if necessary to prevent excessive corrosion and affect equipment operation.
(4) The operating current and voltage should not exceed the current specified by the generator, and external voltage should not affect the operation
The current has an impact, and attention should be paid to adjusting and using it within a safe range.
(5) Keep the salt water tank clean. The salt should be clean and free of impurities. If coarse salt is used, an additional filtering device must be added.
(6) Sodium hypochlorite solution is not easy to store for a long time. It should be produced on the same day in summer and used up on the same day. In winter, the storage time should not exceed one week and it must be stored in the dark. When the temperature is below 25 ° C, effective chlorine is lost by 0.1-0% per day 15mg/l, temperature exceeding 30 ° C, daily loss of effective chlorine 0 3-0. 7mg/l)
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Working principle of sodium hypochlorite generator
Sodium hypochlorite generator is a device that produces sodium hypochlorite solution by electrolysis of salt water. It works as follows:
1. Sodium hypochlorite generator is mainly composed of electrolytic cell, electrode and power supply. Electrolytic cell is a container, the container is divided into anode and cathode two electrolytic chamber, electrode respectively placed in the anode and cathode electrolytic chamber.
2. First, dissolve salt (sodium chloride) in water to form salt water.
3. Pour the salt water into the electrolytic cell, and connect the power supply to the electrode. When the current passes through the electrolytic cell, the positive reaction is: 2C1~ →Cl2 +2e~, and the negative reaction is :H20+2e~→2OH~+H2.
4. On the anode, chloride ion (CI-) is oxidized to chlorine gas (Cl2), while the water molecules in the original brine are also reduced, releasing hydroxide ion (OH~) and hydrogen gas (H2).
5. On the cathode, hydrogen ions (H+) react with hydroxide ions (OH) to form water molecules (H2o). This reaction is a reduction reaction
6. Because chlorine is toxic and corrosive, it is necessary to remove the generated chlorine from the anode chamber and remove the hydrogen from the cathode chamber.
7. Finally, in the intermediate chamber formed between the anode and cathode, the chlorine gas flowing from the anode chamber reacts with the hydrogen gas flowing from the cathode chamber to form a sodium hypochlorite solution. Sodium hypochlorite solution is a kind of disinfectant, which has strong bactericidal ability.
Packaging and transportation
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Pre-sale service
Conduct product consultation,product promotion and marketing activities,and technical support for customer needs.
02
Installation service
Before the actual installation,we will communicate with the customer to understand the installation needs and requirements,and develop the insta..
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After-sales service
Installation and commissioning of specific products;Respond to consumer questions,answer consumer inquiries,and deal with consumer comments.


Contact information
Country:China
Add:Baoti road,Jintai,Baoji city,Shaanxi,China
Cel/Whatsapp :+86 18309262795
Email:annie@jmyunti.com
Website:www.jm-titanium.com

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