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Advantages

  • 01

    Electrode Performance

    Titanium matrix Ti₄O₇ electrode Alkaline removal rate:65.52%,
    TDS removal rate:20.66%,
    Hardness removal rate:30.44 %
    Energy consumption per unit mass scale:23.9 KW·H/KG CaCO₃
  • 02

    Titanium-based ruthenium iridium composite oxide electrode

    Alkaline removal rate:57.67%,
    TDS removal rate: 15.75%,
    Hardness removal rate:31.94%
    Energy consumption per unit mass scale:42.3 KW·H/KG CaCO₃
  • 03

    PbO₂ electrode

    Total water outlet hardness removal rate:92%
    Alkaline removal rate:67%
    Current efficiency:86.6 %
    Energy consumption per unit mass scale:7.2 KW·H/KG CaCO₃
  • 04

    Our company's homemade electrode

    Total water outlet hardness removal rate:95%
    Alkaline removal rate:92%
    Current efficiency:92%
    Energy consumption per unit mass scale:2.0 KW·H/KG CaCO₃

Advantage

Low potential

It has a lower working potential, fundamentally reduces the probability of side reactions on the electrode surface, and effectively avoids metal ion dissolution and local corrosion problems. This feature not only extends the service life of the core components of the equipment, but also ensures stable water quality during operation and reduces the risk of secondary pollution caused by potential fluctuations. It is especially suitable for precision water treatment scenarios that require high water purity.

High scaling efficiency

Using high-efficiency scale induction precipitation technology, it can quickly capture scale-forming components such as calcium and magnesium ions in the water body, and promote them to form solid scale bodies with stable structures and easy separation. Compared with the traditional method, the scale precipitation rate is significantly increased, and the precipitates have uniform particles and weak adhesion. They can be easily removed without complicated stripping processes, which greatly reduces the problems of equipment clogging and heat exchange efficiency reduction caused by scale accumulation.

Low energy consumption

Relying on the optimized energy conversion structure and intelligent control algorithm, while realizing core functions, the energy consumption per unit processing volume is reduced to the lowest level in the industry. Compared with similar equipment, the operating power can be reduced by more than [XX]%, and no additional auxiliary energy consumption is required to maintain system stability. Long-term use can help users to save considerable electricity costs, which meets the current green and low-carbon production and operation needs.
  • Equipment schematic diagram 3
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