Inquiry
Form loading...
Titanium-iridium-ruthenium Electrode Plate Series Electrocatalytic Oxidation Equipment
Equipment & Machinery
Featured Products

Titanium-iridium-ruthenium Electrode Plate Series Electrocatalytic Oxidation Equipment

Organic pollutants are directly degraded through electrode reactions under the influence of an applied electric field, or by utilizing the catalytic activity of the ruthenium-iridium composite materials to generate a large amount of highly oxidative free radicals for the degradation of organic pollutants.

    Advantage

    1: Electrocatalytic oxidation achieves a high removal rate for organic pollutants, with COD removal rates reaching 30-90%. It can non-selectively degrade toxic, non-biodegradable organic substances in wastewater into carbon dioxide, water, and minerals, and convert non-biodegradable high-molecular-weight organic compounds into biodegradable small molecules, thereby enhancing wastewater biodegradability.

    2: No chemical reagents are added during the reaction, and no sludge or secondary pollution is generated, making it a "green and environmentally friendly process."

    3: The reaction occurs under normal temperature and pressure conditions, making it safe, simple, and flexible to operate. The catalytic oxidation device is modularly assembled for rapid engineering application, with a high degree of system automation and minimal manual operation burden.

    4: Electrocatalytic oxidation not only removes COD and color but also efficiently removes ammonia nitrogen from wastewater.

    Applications of Titanium-iridium-ruthenium Electrode Plate Series Electrocatalytic Oxidation Equipment

    5dze

    Deep oxidation treatment of membrane concentrate (in industries such as coking, coal chemical, and wastewater treatment plants)

    High-salinity, high-concentration wastewater in chemical production (such as from dyes, pharmaceuticals, and pesticides)

    Landfill leachate, desulfurization wastewater, and oil field wastewater

    Technolgies Related

    Solutions Recommend