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US Patent 11841172 Geothermal power from superhot geothermal fluid and magma reservoirs

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Is a
Patent
Patent
0

Patent attributes

Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
118411720
Patent Inventor Names
Kimberly C. Conner0
Greg Lindberg0
Date of Patent
December 12, 2023
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Patent Application Number
180995140
Date Filed
January 20, 2023
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Patent Citations
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US Patent 9006298 Fischer-Tropsch process
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US Patent 10203162 Geothermal heat exchanger, liquid transport pipe, liquid raising pipe, geothermal power generation facility, and geothermal power generation method
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US Patent 10322940 Composite, method for producing composite, ammonia synthesis catalyst, and ammonia synthesis method
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US Patent 10344233 Processes for producing high biogenic concentration Fischer-Tropsch liquids derived from municipal solid wastes (MSW) feedstocks
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US Patent 10358604 Method for stopping and restarting a Fischer-Tropsch process
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US Patent 10710049 Method for activating a catalyst, reactor, and method of obtaining hydrocarbons in fischer-tropsch process
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US Patent 10745625 Process for producing hydrocarbons
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US Patent 10759668 Supported metal material, supported metal catalyst, and ammonia synthesis method using the same
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Patent Primary Examiner
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Tho V Duong
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CPC Code
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E21B 36/003
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E21B 41/0085
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F24T 10/10
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F24T 10/13
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F24T 10/15
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F24T 10/17
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F24T 2010/53
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Patent abstract

System, method, and apparatus for harnessing geothermal power from superhot geothermal fluid (SHGF) and magma reservoirs. An exemplary embodiment is directed to a cased wellbore includes a well casing suspended within a borehole that extends between a surface and an underground reservoir of magma and a boiler casing housed within the well casing and extending between the surface and the underground reservoir of magma. The boiler casing has a first end submerged within the underground reservoir of magma and a terminal end opposite to the first end. The cased wellbore also includes a fluid conduit housed within the boiler casing and configured to deliver a liquid-phase fluid to the terminal end of the boiler casing. A temperature and a pressure at the terminal end of the boiler casing converts the liquid-phase fluid into a gas-phase fluid that travels through the boiler casing towards the surface. The cased wellbore also includes a well head connected to the first end of the boiler casing.

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