Hydrogen-oxygen generating system
Abstract
A hydrogen-oxygen generating system includes a water capture-storage ( 10 ), where water is stored and hydrogen-oxygen mixed gas is captured, an electrolyte unit ( 20 ) including inflowing pipe ( 25 ) to inhale water, and out-flowing pipe ( 26 ) to exhale hydrogen-oxygen mixed gas and including a plurality of electrodes ( 21 )( 22 ) to electrolyze water, a first heat radiant pipe ( 30 ) radiating heat and supplying water to the electrolyte unit ( 20 ) from water capture-storage ( 10 ) and connected to a lower part of the water capture-storage ( 10 ) and a second heat radiant pipe ( 40 ) connected to the outflowing pipe ( 26 ) and an upper part of the water capture-storage ( 10 ) radiating heat as it provides hydrogen-oxygen mixed gas to the water capture-storage ( 10 ).
Claims
exact text as granted — not AI-modified1 . A hydrogen-oxygen generating system comprises:
a water capture-storage ( 10 ), where water is stored and hydrogen-oxygen mixed gas is captured; an electrolyte unit ( 20 ) including inflowing pipe ( 25 ) to inhale water, and out-flowing pipe ( 26 ) to exhale hydrogen-oxygen mixed gas and including a plurality of electrodes ( 21 )( 22 ) to electrolyze water; a first heat radiant pipe ( 30 ) radiating heat and supplying water to the electrolyte unit ( 20 ) from water capture-storage ( 10 ) and connected to a lower part of the water capture-storage ( 10 ); and a second heat radiant pipe ( 40 ) connected to the outflowing pipe ( 26 ) and an upper part of the water capture-storage ( 10 ) radiating heat as it provides hydrogen-oxygen mixed gas to the water capture-storage ( 10 ).
2 . A hydrogen-oxygen generating system as recited in claim 1 , wherein the first radiant pipe ( 30 ) includes a heat radiant plate ( 31 ) rolled like a coil and a number of heat radiant pin formation centers ( 32 ) on the heat radiant plate ( 31 ) to increase the contact area with air.
3 . A hydrogen-oxygen generating system as recited in claim 2 , wherein the second heat radiant pipe ( 40 ) includes a heat radiant plate ( 41 ) rolled like a coil and a number of heat radiant pin formation centers ( 42 ) on the heat radiant plate ( 41 ) to increase the contact area with air.
4 . A hydrogen-oxygen generating system as recited in claim 3 , wherein thermal conduction plates are formed on surfaces of the first heat radiant pipe ( 30 ) and the second heat radiant pipe ( 40 ) and the thermal conduction plate is formed when carbon nano-tube in nanometer size and tourmaline catalysts are applied alone or together thereto.
5 . A hydrogen-oxygen generating system as recited in claim 1 , further comprising:
a heat radiating pan ( 33 ) toward the 1 st and the 2 nd heat radiant pipes ( 30 )( 40 ); and a temperature sensor ( 34 ) which sends a signal to heat radiating pan ( 33 ) to activate when a temperature of the water capture-storage ( 10 ) goes beyond a certain point.
6 . A hydrogen-oxygen generating system as recited in claim 1 , further comprising:
a water level preservation section ( 50 ) connected to a main water supplier (S) working to maintain a constant water level in the water capture storage; a reflux prevention filter unit ( 60 ) to prevent hydrogen-oxygen mixed gas from flowing back to the water capture-storage ( 10 ); and a nozzle ( 70 ) connected with the reflux prevention filter unit ( 60 ) to spray hydrogen-oxygen mixed gas.
7 . A hydrogen-oxygen generating system as recited in claim 1 , further comprising:
a mixed gas centrifuge ( 11 ) in the water capture-storage ( 10 ) to separate hydrogen-oxygen mixed gas from water; and a capturing device ( 12 ) which captures hydrogen-oxygen mixed gas separated from water by the mixed gas centrifuge ( 11 ).Join the waitlist — get patent alerts
Track US2010155233A1 — get alerts on status changes and closely related new filings.
We store only your email — no account needed. See our privacy policy.