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A Direct Methane Fueled Thin Film SOFC Technology
Reference #: 01501 The University of South Carolina is offering licensing opportunities for A Direct Methane Fueled Thin Film SOFC Technology Background: Fuel flexibility is an attractive advantage of solid oxide fuel cell (SOFC) technology; however, carbon deposition issue with widely used Ni-cermet anodes in hydrocarbon fuels seriously limits its...
Published: 9/3/2022
|
Inventor(s):
Xingjian Xue
,
Chunlei Ren
Keywords(s):
alumina
,
carbon deposition prevention
,
direct methane
,
inert structured substrate
,
microtubular SOFCs
Category(s):
Energy
,
Engineering and Physical Sciences
Alumina Substrate Supported Microtubular Solid Oxide Cells
Reference #1275The University of South Carolina is offering licensing opportunities for a novel microtubular solid oxide fuel cell technology.Background:Solid oxide fuel cells (SOFC) are energy conversion devices which convert the chemical energy of fuels and oxidants directly into electrical energy in an environmentally benign and highly efficient...
Published: 4/19/2022
|
Inventor(s):
Xingjian Xue
,
Chunlei Ren
Keywords(s):
Category(s):
Engineering and Physical Sciences
,
Chemistry and Biochemistry
,
Energy
Method to Fabricate Micro-channel Array Structured Micro-tubular Solid Oxide Cells
Reference #: 01162The University of South Carolina is offering licensing opportunities for microchannel array structured microtubular solid oxide cells with improved power density and efficiency. Background: Typical microtubular anode-substrates prepared in open literature have the feature of multiple-layered microstructures, where a sponge-like layer...
Published: 5/27/2021
|
Inventor(s):
Xingjian Xue
,
Chunlei Ren
Keywords(s):
Category(s):
Engineering and Physical Sciences
,
Chemistry and Biochemistry
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