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US Patent 11976235 High temperature thermochemical energy storage materials

Patent 11976235 was granted and assigned to BATTELLE SAVANNAH RIVER ALLIANCE, LLC on May, 2024 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent
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Patent attributes

Patent Applicant
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Savannah River Nuclear Solutions
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Current Assignee
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BATTELLE SAVANNAH RIVER ALLIANCE, LLC
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
119762350
Patent Inventor Names
Patrick A. Ward0
Ragaiy Zidan0
Date of Patent
May 7, 2024
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Patent Application Number
170809550
Date Filed
October 27, 2020
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Patent Citations
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US Patent 8372561 Composite fluid storage unit with internal fluid distribution feature
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US Patent 8377555 Gas storage materials, including hydrogen storage materials
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US Patent 8883109 High capacity stabilized complex hydrides for hydrogen storage
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US Patent 8945500 High capacity hydrogen storage nanocomposite materials
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US Patent 9199844 Two step novel hydrogen system using additives to enhance hydrogen release from the hydrolysis of alane and activated aluminum
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US Patent 9777968 Metal hydride-based thermal energy storage systems
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US Patent 9840412 High capacity hydrogen storage nanocomposite materials
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US Patent 10443954 High performance metal hydride based thermal energy storage systems for concentrating solar power
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Patent Primary Examiner
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Matthew R Diaz
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CPC Code
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C09K 5/14
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C09K 5/16
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F24V 30/00
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C09K 5/08
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F28D 20/003
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C09K 5/063
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C09K 5/06
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F28D 20/00
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Patent abstract

Disclosed are high enthalpy thermochemical energy storage materials that exhibit high thermal conductivity and stability at high temperature reaction conditions. Disclosed materials include hydride-based alloys that can undergo high temperature reversible hydrogenation/dehydrogenation reactions without phase change of any metal or metalloid components of the alloy. The materials undergo a reversible exothermic hydrogenation reaction to form a metal hydride and a ternary alloy that includes a high thermal conductivity metal that, in its pure state, would exhibit a phase change at the hydrogenation reaction conditions.

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