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Application Fields: | Chemical, Electronic, Food, Medical, New Energy, Petroleum, Pharmaceutical |
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Also it can be used in the area of chemical industry hydrogen generator, reduction protection, metal welding, smelting, power station cooling, hydrogen station producing hydrogen, surface protection, spacecraft, submarine, heavy hydrogen, heavy oxygen water, etc.
Specifications | QLS-H1 Hydrogen Generator |
Output Volume(m3/h) |
1 |
Output Pressure(Mpa) | 0.02~3Mpa |
Hydrogen Purity(%) | > 99.999 |
Input Power(KW) | 7 |
Water Tank Volume(L) | 60 |
Water Requirement | water electrical resistivity ≥ 1MΩ /cm |
Weight(kg) | < 1000 |
Operational Principle
Electrolytic water meeting the requirements (With electrical resistivity >1MΩ / cm, and deionized or redistilled water in electronic and analysis industries can be used for this purpose. ), after being put into the anode chamber of electrolytic cell, when power is switched on, will be decomposed at once at the anode: 2H2 O = 4H++ 2O-2. The decomposed negative oxyanion (O-2) will immediately release electron to form oxygen (O2), which will then be discharged from the anode chamber, with some water, into the water tank. The water can be used circularly, and oxygen will be discharged from the small hole of the top cover of the water tank into the atmosphere.
The hydrogen proton, in the form of aqua ion (H+XH2 O), and under the action of electric field force, through SPE ion membrane, will arrive in the cathode to absorb electron to form hydrogen, which will then be discharged from the cathode chamber into the gas/water separator, where most of water it brought with from the electrolytic cell will be removed. The hydrogen with little water will be under moisture absorption of the desiccator, with its purity thus reaching 99.999 % or above.