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Titanium platinized anode for hydrogen-rich water production

The production of hydrogen-rich water by electrolysis is a process in which water molecules are electrolyzed into hydrogen and oxygen by electrolysis. Electrolysis to produce hydrogen-rich water products was popular in Japan, South Korea and other countries in the early years. The series of products include hydrogen-rich cups, hydrogen-rich water machines, hydrogen ventilators, beauty instruments, etc. In China, there are also many merchants that make such products. The first series of hydrogen-rich water products are generally made of products that do not separate hydrogen and oxygen, and the hydrogen content is relatively low. Many companies use ruthenium and iridium mixed oxide-coated electrodes. Later, with the research and application of DSA insoluble anode materials, titanium platinized anodes are more and more used in electrolysis to produce hydrogen-rich water due to its good electrocatalytic activity. Some manufacturers have begun to make hydrogen-rich water cups for titanium platinized electrodes. , and the core component that plays a key role in the quality and quality of the hydrogen-rich cup is the titanium electrode.

So, what role does the titanium electrode play in the hydrogen-rich water cup?

The hydrogen-rich water cup uses titanium platinized electrodes. In recent years, many hydrogen-rich water cups on the market are platinum-plated on a titanium substrate, using electrolysis and SPE technology to separate hydrogen and oxygen, and the water that needs to be electrolyzed enters the electrolysis In the anode chamber of the tank, water is immediately decomposed into 4 positively charged H and 2 -2 oxygen after electrification, and the decomposed negative oxygen ions immediately release electrons at the anode to form oxygen, which is discharged from the anode and carries part of the water into the sink. Hydrogen protons in the form of hydrated ions pass through the ion membrane under the action of electric field force, reach the cathode to absorb electrons to form hydrogen gas, discharge from the cathode chamber, and enter the water to generate hydrogen-rich water.

The use of titanium-based platinum-plated electrodes can overcome the passivation of the surface of the titanium electrode sheet to form an oxide layer, overcome the problem of slowing down the reaction speed of traditional electrodes with the increase of electrolysis time, and the hydrogen production content is stable. It is an ideal electrode material for the current technology.

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