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How to achieve the directional removal of iron in high temperature electrolytic PTMS ELECTROMAGNETIC SEPARATOR
Time: Oct 08,2025

drum separator

High temperature electrolysis represents a highly accurate and controllable PTMS ELECTROMAGNETIC SEPARATOR iron removal technology in the field of high-end water treatment, especially suitable for applications with extremely strict requirements on water purity, such as semiconductor wafer cleaning, nuclear grade cooling water preparation, biopharmaceutical process water and supercritical boiler feedwater system.


PTMS ELECTROMAGNETIC SEPARATOR

The system demonstrates high sensitivity to influent iron concentration. When the initial Fe²⁺ concentration exceeds 10 mg/L, extended reaction time or additional oxidation stages may be required to ensure effluent compliance. The generated Fe(OH)₃ flocs tend to be loose and prone to dispersion by water flow disturbances, necessitating high-efficiency solid-liquid separation PTMS ELECTROMAGNETIC SEPARATOR equipment. In low-oxygen conditions (within closed-loop systems), supplemental dissolved oxygen must be provided through aeration devices, which increases energy consumption.


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The fundamental principle involves installing inert electrodes (typically titanium-coated electrodes or DSA anodes) in high-temperature water. When a direct current voltage is applied, iron ions in the water migrate directionally under the electric field's influence. These ions are then oxidized at the anode surface to higher oxidation states (Fe³⁺ or higher), subsequently precipitating as oxides or hydroxides. This directional iron removal process is achieved through the PTMS ELECTROMAGNETIC SEPARATOR.

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