Comparison of Electrode Materials for Degrading Organic Pollutants
Comparison of Electrode Materials for Degrading Organic Pollutants Strong oxidant species like hydroxyl radicals, atomic oxygen, hydrogen peroxide, perhydroxyl radicals, and free chlorine are produced in the electrochemical reactions. These powerful oxidizing agents are capable of degrading organic pollutants and kill the bacteria. By electrolysis of water, anodic catalysis to produce adsorbed hydroxyl radicals. The electrode material strongly affects the production of reactive species such as Cl2, OCl- , H2O2, ozone, &mid
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The Principle of Electroflotation and Electrocoagulation
The Principle of Electroflotation and Electrocoagulation Electroflotation involves the electrolytic production of gases (O2, H2) that can be used to attach pollutants, such as fats and oils, to the gas bubbles and carry them up to the top of the solution where they can be more easily collected and removed. Electrocoagulation refers to the electrochemical production of destabilization agents that bring about charge neutralization for pollutant removal. Electroflocculation is the electrochemical production of agents that promote part
The Operating Principle of Peroxone (Ozone/Hydrogen Peroxide) Disinfection
The Operating Principle of Peroxone (Ozone/Hydrogen Peroxide) Disinfection The operating principle ozone disinfection is hydroxyl radicals are produced during the spontaneous decomposition of ozone. By accelerating the ozone decomposition rate, the hydroxyl radical concentration is elevated, and therefore the oxidation rate of various compounds in the water is increased. Several methods have been used to increase ozone decomposition and produce high concentrations of hydroxyl radicals: ozone plus UV, ozone at high pH, hydrogen
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