The preparation of acidic oxidation potential water is usually carried out in a special ion membrane electrolytic cell by adding a certain concentration of salt water (mass concentration less than 10g / L) and electrolysis at a certain current density. In this way, acidic oxidation potential water is obtained on the anode side, and its main components are chlorine gas, hypochlorous acid, hypochlorite, hydrochloric acid, dissolved oxygen, and ozone. The principle is: the main chlorine evolution reaction occurs in the anode. In addition, alkaline potential water is generated on the cathode side. Its pH is greater than 11.0 and the ORP value is less than -900 mV. Its main components are hydrogen and dilute sodium hydroxide solution, which has a strong cleaning effect. Its cathode reaction is mainly a hydrogen evolution reaction.

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Acid oxidation potential water titanium anode reaction:

2H2O == O2 + 4H + + 4e
2OH–2e == 2OH
2OH == (O) + H2O
(O) + O2 == O3
2Cl–2e == Cl2
Cl2 + H2O == HOCl + HCl
Cathode reaction:
2H2O + 2e == H2 + 2OH-
Na + + OH- == NaOH

The factors influencing the preparation process of acidic oxidation potential water are mainly divided into 2 categories, namely electrolytic system and electrolytic equipment. The influencing factors of the electrolytic system mainly include the electrolyte concentration, voltage and current, the flow of water into the electrolytic cell and the location of the water, etc .; electrolytic equipment. The influencing factors mainly include ion exchange membranes, electrode materials, electrode plate area, and electrode spacing, etc. These influencing factors interact to affect the water performance.