gptkbp:instanceOf
|
patent
|
gptkbp:abstract
|
A method for producing hydrogen efficiently.
|
gptkbp:applicationNumber
|
10/123,456
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gptkbp:applicationPublication
|
gptkb:US_2003/0123456_A1
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gptkbp:applicationType
|
Non-Provisional
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gptkbp:assignee
|
gptkb:ABC_Corporation
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gptkbp:citedBy
|
gptkb:US_7,123,456_B2
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gptkbp:claims
|
20
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gptkbp:class
|
Energy Production
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gptkbp:economicImpact
|
Job creation in renewable energy sector
Cost-effective hydrogen production
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gptkbp:environmentalImpact
|
Low emissions
Sustainable energy source
|
gptkbp:examiner
|
Jane_Smith
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gptkbp:expirationDate
|
March 15, 2023
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gptkbp:fieldOfInvention
|
Energy
|
gptkbp:filingDate
|
March 15, 2003
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gptkbp:grantDate
|
September 7, 2004
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gptkbp:hasFieldOfUse
|
Commercial
Industrial
Renewable Energy
Residential
Transportation
|
https://www.w3.org/2000/01/rdf-schema#label
|
US 6,789,133 H2
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gptkbp:internationalClassification
|
C01B3/00
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gptkbp:inventor
|
gptkb:John_Doe
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gptkbp:inventorCountry
|
gptkb:USA
|
gptkbp:issuedOn
|
September 7, 2004
|
gptkbp:legalStatus
|
Granted
|
gptkbp:patentCitation
|
gptkb:US_5,678,910_A
gptkb:US_6,543,210_B1
gptkb:US_7,890,123_B2
gptkb:US_8,765,432_B1
gptkb:US_9,876,543_B2
|
gptkbp:patentFamily
|
US_6,789,133_H2,_US_7,123,456_B2
|
gptkbp:patentNumber
|
6,789,133
|
gptkbp:patentOffice
|
gptkb:United_States_Patent_and_Trademark_Office
|
gptkbp:patentType
|
Utility Patent
|
gptkbp:priorityDate
|
March 15, 2002
|
gptkbp:relatedPatent
|
gptkb:US_6,789,138_H2
gptkb:US_6,789,137_H2
gptkb:US_6,789,136_H2
gptkb:US_6,789,134_H2
gptkb:US_6,789,135_H2
|
gptkbp:relatedTo
|
gptkb:Hydrogen_fuel_cells
|
gptkbp:socialResponsibility
|
Reduction of fossil fuel dependency
Increased energy security
|
gptkbp:status
|
Active
|
gptkbp:subclass
|
Hydrogen Generation
|
gptkbp:technology
|
Electrolysis
Steam methane reforming
Photoelectrochemical water splitting
Biomass_gasification
Thermochemical_cycles
|
gptkbp:title
|
Method for Enhancing Hydrogen Production
|