Multifunctional hydrogen inhalation machine
A hydrogen inhaler, multi-functional technology, applied in respirator, organic diaphragm, cells and other directions, can solve the problems of shortening the life of the electrolyzer, high cost of the hydrogen inhaler, accumulation of water vapor, etc., and achieves simple structure, low cost, and maintenance. and easy maintenance
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[0027] Further, the SPE diaphragm is a proton exchange membrane, and its preparation method includes the following steps: phenyl 2,3,4,5,6-pentafluoro-1-ethylenesulfonate, acrylonitrile, vinylbenzenesulfonic acid , dodecafluoro-1,9-decadiene, emulsifier, and photoinitiator are mixed, ultrasonicated for 5-10 minutes, and then poured into a template, placed in a nitrogen or inert gas atmosphere, under ultraviolet light with a wavelength of 200-260nm Irradiate under light for 30-50 minutes to obtain an SPE diaphragm.
[0028] Preferably, the phenyl 2,3,4,5,6-pentafluoro-1-ethylenesulfonate, acrylonitrile, vinylbenzenesulfonic acid, dodecafluoro-1,9-decadiene, emulsifier, The mass ratio of photoinitiator is 1:2:1:0.3:0.1:(0.03-0.05); Described emulsifier is selected from sodium dodecylbenzenesulfonate, polyoxypropylene polyoxyethylene glyceryl ether, nonylphenol One of polyoxyethylene ethers; the photoinitiator is at least one of benzoin ether and benzoin isopropyl ether; the ine...
Embodiment 1
[0033]A hydrogen inhaler, characterized in that it includes a housing 1, and a water tank 2, an electrolytic cell 3, and a gas-water separator 4 arranged in the housing 1; the housing 1 is provided with a hydrogen outlet 5 and a drainage Port 6, the water tank 2 is provided with a water inlet 7; the electrolytic cell 3 includes a cell body 8, and an electrolytic cell anode chamber 9, an electrolytic cell cathode chamber 10, an SPE diaphragm 11, and a cathode plate located inside the cell body 8 12. Anode plate 13; the bottom of the water tank 2 communicates with the anode chamber 9 of the electrolytic cell through a water supply pipe 14, and the anode chamber 9 of the electrolytic cell communicates with the side wall of the water tank 2 through an oxygen exhaust pipe 15; the cathode chamber of the electrolytic cell 10 communicates with the side wall of the gas-water separator 4 through a hydrogen discharge pipe 16; the top of the gas-water separator 4 communicates with the hydr...
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