Hydrogen-oxygen mixed gas generating system
Abstract
A hydrogen-oxygen mixed gas generating system includes water capture-storage where water is stored and hydrogen-oxygen mixed gas is captured, an electrode unit including multiple electrodes to electrolyze water, at least one water supplying pipe connecting a lower part of the water capture-storage and the electrode unit for providing water from the water capture-storage to the electrode unit, at least one gas supplying pipe connecting an upper part of the water capture-storage and the electrode unit to provide hydrogen-oxygen mixed gas produced from the electrode unit to an upper part of the store water in the water capture-storage and an endothermic heat radiant system which absorbs and radiates the heat from the water capture-storage in the water capture-storage. The endothermic heat radiant system includes multiple heat radiant pipes that penetrate the water capture-storage up and down and a heat radiant pin formation contained in the heat radiant pipes to expand the contact area with air.
Claims
exact text as granted — not AI-modified1 . A hydrogen-oxygen mixed gas generating system comprising:
water capture-storage where water is stored and hydrogen-oxygen mixed gas is captured; an electrode unit including multiple electrodes to electrolyze water; at least one water supplying pipe connecting a lower part of the water capture-storage and the electrode unit for providing water from the water capture-storage to the electrode unit; at least one gas supplying pipe connecting an upper part of the water capture-storage and the electrode unit to provide hydrogen-oxygen mixed gas produced from the electrode unit to an upper part of the store water in the water capture-storage; and an endothermic heat radiant system which absorbs and radiates the heat from the water capture-storage in the water capture-storage, wherein the endothermic heat radiant system includes multiple heat radiant pipes that penetrate the water capture-storage up and down and a heat radiant pin formation contained in the heat radiant pipes to expand the contact area with air.
2 . The endothermic heat radiant system as recited in claim 1 , further comprising:
a heat radiant pan on an upper or a lower part of the heat radiant pipes; and a temperature sensor which signals the heat radiant pan to act when the temperature of water capture-storage is above a certain temperature.
3 . The endothermic heat radiant system as recited in claim 1 , wherein a thermal conduction plate is formed on surfaces of the heat radiant pin formation and the water capture-storage and on the inside of the heat radiant pipes to increase heat absorption and radiation.
4 . The endothermic heat radiant system as recited in claim 1 , therein a thermal conduction plate is formed on surfaces of the heat radiant pin formation and the water capture-storage, or inside the heat radiant pipes.
5 . The endothermic heat radiant system as recited in claim 1 , further comprising a water level balancer connected to a main water supplying pipe for maintaining a water level stored in the water capture-storage.
6 . The hydrogen-oxygen generating system as recited in claim 1 , further comprising:
a mixed gas separating filter installed inside the water capture-storage to separate the hydrogen-oxygen mixed gas from the water; and a capturing device formed on an upper part of the mixed gas separating filter which captures the hydrogen-oxygen mixed gas passing through the mixed gas separating filter.Join the waitlist — get patent alerts
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