一种多维电催化氧化反应器

By arranging titanium anode plates and high-carbon cast iron cathode plates alternately in a multidimensional electrocatalytic oxidation reactor, combined with an aeration pipe design, the problems of low energy efficiency, short electrode life, and high cost of traditional electrocatalytic oxidation technology are solved, achieving efficient wastewater treatment and improved biodegradability.

CN224513267UActive Publication Date: 2026-07-17SHANDONG LIYUAN HAIDA ENVIRONMENTAL ENG

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANDONG LIYUAN HAIDA ENVIRONMENTAL ENG
Filing Date
2025-07-24
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing electrocatalytic oxidation technology suffers from problems such as low energy efficiency, short electrode life, high cost, and poor wastewater treatment effect. In particular, when treating highly toxic organic wastewater, traditional equipment cannot effectively improve the biodegradability of the wastewater.

Method used

A multidimensional electrocatalytic oxidation reactor is adopted, using titanium plate anodes and high carbon cast iron plate cathodes arranged alternately. The anode plate surface is coated with ruthenium-iridium titanium tin oxide coating. Combined with the design of aeration pipes and support frame, it forms an alternating cross arrangement, which increases the retention time and uniformity of sewage, and utilizes hydroxyl radicals for oxidative degradation.

Benefits of technology

It improves energy conversion efficiency, extends electrode life, reduces equipment costs, and significantly enhances the biodegradability and treatment effect of wastewater through the action of hydroxyl radicals.

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Abstract

本实用新型涉及一种多维电催化氧化反应器,属于污水处理设备技术领域,包括双室箱体、进水口、出水口、进气口、隔板,隔板远离进水口和出水口一端设有过水口,每个反应区内均交错设有阳极板和阴极板,阳极板为钛材板,阳极板表面为钌铱钛氧化锡涂层,阴极板为高碳铸铁板,两个反应区的底部均设有曝气管,曝气管连接进气口。本实用新型阳极板为钛材板,阳极板表面设有钌铱钛氧化锡涂层,导电性更强,耐腐蚀,较高的析氧地电位、可产生良好的羟基自由基优点,提高能量转换效率。使用寿命更长。阴极板和阳极板交错布置,在满足运行工况前提下极板的投资成本降低。污水分区顺序流动,增加污水在双室箱体滞留时间,提高处理效果。
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