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Electronic Descaler

Working voltage:<36V
Input power supply: 220 V/ 50 Hz
Index range of PH meter:6.5-8.5 PPM.
Index range of conductivity meter:2000 μs/cm.

Features

Technical Parameters

Input power supply 220 V/ 50 Hz
Working voltage <36V
Validity period

The water is valid for 1 hour after treatment. You can replace the scale suction basket at will.

Design life

main unit: 15 years, modular work optional; auxiliary machine:10 years, and all are made of titanium-ruthenium alloy materials.

Applicable water quality

Total hardness ≤ 10000 mg/L (calculated as CaCO), water temperature<105 ℃, flow rate =2.8 m/s.

Scale absorption rate

≥ 98%, sterilization and algae removal rate ≥ 99%, steel pipe corrosion rate ≤0.085 mm/a, legionella killing rate 100%, dynamic adjustment rate 99%.

Index range of PH meter 6.5-8.5 PPM.
Index range of conductivity meter

2000 μs/cm.

Range of corrosion rate instrument: less than 0.075 mm/a.
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Equipment Overview

 

The electronic descaler consists of a controller and an absorption unit, with the absorption unit installed in a water tank, cooling tower basin, or storage reservoir. A microcomputer-controlled electric field generator produces a pulsed electric field that acts on the positive and negative electrodes of the scale-collecting unit, triggering a series of electrochemical reactions in the water.

The specially manufactured inert anode undergoes oxidation on its surface, generating oxidizing substances such as active oxygen and available chlorine. At the same time, the cathode undergoes a reduction reaction that produces hydroxide ions, creating a relatively alkaline environment. Under these alkaline conditions, scale-forming minerals in the water precipitate in advance and attach to the cathode, rather than forming deposits inside the pipeline system. Meanwhile, the oxidizing substances generated near the anode provide continuous sterilizing and algae-inhibiting effects.

At the same time, the activated ionic water helps form a protective film on the inner walls of pipes and heat exchange equipment, helping prevent corrosion. During operation, the electronic descaler also releases large amounts of highly effective sterilizing substances such as O₃, OH⁻, O₂⁻, H₂O₂, and ¹O₂. Combined with its patented bipolar electrolysis technology, it can achieve a sterilization and algae removal rate of up to 99.8% against various types of algae, cells, and bacteria in the water.

 

advantages of Products 

Electronic Descaler

why choose our products

 

The electronic descaler is made of titanium-ruthenium alloy and provides a highly efficient, energy-saving solution for circulating water treatment systems. Compared with traditional chemical dosing methods, it offers the following advantages:

Physical scale removal and prevention

Active scale collection: Using the principle of electrolysis, calcium and magnesium ions migrate to the cathode inside the reaction chamber, where they crystallize and precipitate, allowing scale-forming substances to be removed directly from the water.

Scale removal and prevention: The electromagnetic field and electrochemical environment generated by the unit alter the molecular structure of the water, helping existing hard scale soften and detach so it can be discharged through the blowdown system.

Environmentally friendly with low maintenance costs

No chemicals required: The entire process operates without descaling agents, inhibitors, or biocides, avoiding secondary pollution and eliminating the burden of acidic wastewater discharge.

Fully automatic operation: Most units are equipped with automatic scraping and flushing functions, which help reduce labor costs. Installation is simple and can usually be carried out online without shutting down the system.

Integrated multifunctional performance

Sterilization and algae control: Strong oxidizing agents generated at the anode, such as ozone and hydroxyl radicals, effectively eliminate bacteria and algae and help prevent biofilm formation.

Corrosion protection: By forming a protective film on the inner pipe wall or altering the oxidation-reduction potential (ORP) of the water, the unit helps reduce the risk of corrosion in metal piping.

Energy-efficient performance: It allows the system to operate at a higher concentration ratio, significantly reducing wastewater discharge.

Flexible structure and easy installation: The modular design can be configured according to different flow rates and can be installed directly on the outlet of the circulating pump or the main return pipe without requiring major changes to existing infrastructure.

 

 

Performance Parameters


We offer a wide range of models and parameter configurations for the electronic descaler, making it easier for customers to select the most suitable option based on their actual operating conditions. Whether your application is for standard use or a more specialized environment, we can help match you with a more appropriate configuration. If you have any questions during the selection process, our professional team can provide one-on-one support to help you quickly determine the right product specifications and application solution.

Performance Parameters

 

Sales And Service Network

 

Sales And Service Network

 

Certifications

 

Certifications-11
Certifications-21
Certifications-31
FAQ

Q: What is an electronic descaler used for?

A: An electronic descaler is used to help reduce scale buildup in water systems without adding chemicals. It is commonly installed in pipelines, heat exchange equipment, cooling systems, and other water-based setups where mineral deposits can affect performance over time.

Q: Where is an electronic descaler commonly used?

A: It is often used in circulating water systems, boilers, cooling towers, heat exchangers, domestic water lines, and industrial equipment that may suffer from limescale problems. It is especially useful in places where users want a low-maintenance, chemical-free solution.

Q: What should be checked before choosing an electronic descaler?

A: It helps to know the pipe size, water hardness level, flow conditions, system type, and where the unit will be installed. It is also important to understand the operating goal, whether that is scale prevention, reduced maintenance, or better long-term system efficiency.

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