Iron carbon micro electrolysis tower
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Micro (internal) electrolysis method is an electrochemical technique that utilizes the micro (internal) electrolysis process formed by the corrosion of iron carbon particles in an electrolyte solution to treat wastewater.
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1. Equipment Overview
Micro (internal) electrolysis method is an electrochemical technique that utilizes the micro (internal) electrolysis process formed by the corrosion of iron carbon particles in an electrolyte solution to treat wastewater. The electrode reaction process does not consume electricity, but can produce oxidation-reduction, electropolymerization, and other effects; The new ecological Fe generated by electrode reaction is a coagulant with strong adsorption, containment, and complexing abilities. Therefore, the characteristics of micro electrolysis method are multiple mechanisms of action, strong synergy, good comprehensive effect, especially obvious decolorization effect, and can also improve the biodegradability of wastewater. It has good compatibility with secondary biochemical treatment processes, simple operation, and low operating costs. The COD removal rate can reach 40-95%, and the decolorization rate is 50-96%. At present, this technology has been widely applied to the treatment of various inorganic wastewater and the pre-treatment of organic refractory wastewater, with very obvious results.
2. Equipment features:
1. Its pulse expansion technology can make the bed in a loose and uniform state, maintain a uniform porosity of the bed, reduce resistance loss, and effectively prevent bed hardening, blockage, short circuit, and dead zone;
2. It can clean and update the microelectrode contact surface and reaction surface, which is beneficial for improving and maintaining the electrochemical reaction effect;
3. It has the mechanism and function of accelerating electrochemical reactions, significantly improving treatment efficiency;
4. The filler iron filings can be replenished at any time, maintaining the uniformity of the bed filler, greatly reducing the labor intensity of iron supplementation, and extending the service life of the equipment.
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