Multifunctional device capable of generating oxygen, hyperpure activated water and hydrogen-rich water at same time and application method of multifunctional device
A technology of hydrogen-rich water and active water, applied in mechanical oscillation water/sewage treatment, additive water/sewage treatment, non-polluting water treatment, etc., can solve high energy consumption of oxygen production, flammable and explosive hydrogen, system load and other issues to achieve the effect of high electrolysis efficiency, high purity and low energy consumption
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Embodiment 1
[0042] The device used in this embodiment is connected as above, wherein the active area of the electrode is 20 square centimeters, the solid electrolyte pure water electrolytic cell formed by 5 electrolytic cells connected in series is connected to an intelligently controllable DC power supply, and the electrolytic current is passed to 10A At this time, the input of the electrolytic cell is 8.9V, the voltage of the single cell is 1.75V, and the oxygen generated is output to the oxygen mask or the output interface after the humidity is adjusted by the humidity regulator;
[0043] The electrode used in the electrolytic cell is prepared as follows: Nafion-115 membrane is fixed on the mold, 0.1MPt(NH3)4Cl2 solution is added, ion exchange is performed for 30 minutes, the solution is replaced 3 times, the dichlorotetraammine platinum solution is removed, and boron Reduction with sodium hydride solution to prepare the cathode of the membrane electrode; add dichlorotetraammine plati...
Embodiment 2
[0047] Adjust the ultrasonic frequency (1kHz) so that the volume concentration of hydrogen in hydrogen-rich water is 1%;
[0048] The catalyst power supply in the active water generator is an integrated catalyst with microchannels, the carrier is honeycomb carbon, the active component is PtIr alloy, and the atomic ratio of Pt and Ir is 95:5.
[0049] Except above-mentioned difference, others are all identical with embodiment 1.
Embodiment 3
[0051] Except that the catalyst in the active water generator was changed to a Pt catalyst supported on alumina fibers (the loading of Pt was 10 wt%), the others were the same as in Example 1.
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