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Fuelcell Energy Inc FCEL

FuelCell Energy, Inc. is engaged in delivering environmentally responsible distributed baseload energy platform solutions through its fuel cell technology. The Company is a global manufacturer of stationary fuel cell and electrolysis platforms that decarbonize power and produce hydrogen. Its commercial technology produces electricity, heat, hydrogen, and water while separating carbon for utilization and/or sequestration. Its product portfolio is based on two electrochemical platforms, carbonate, and solid oxide. Both platforms can support power generation and combined heat and power applications using a variety of fuels, including natural gas, renewable biogas, and hydrogen. Its Carbonate platforms use a mixture of reforming and electrolysis, while solid oxide platforms can be used for pure hydrogen electrolysis. Its solid oxide platform operates on pure hydrogen fuel. Its commercial platforms include SureSource 1500, SureSource 3000, SureSource 4000 and SureSource Hydrogen.


NDAQ:FCEL - Post by User

Post by 3.1417on Dec 05, 2023 3:40pm
73 Views
Post# 35769752

FCEL European Patent EP3646405B1

FCEL European Patent EP3646405B1SELECTIVELY ROTATED FLOW FIELD FOR THERMAL MANAGEMENT IN A FUEL CELL STACK
Solid oxide fuel cells comprise an electrolyte sandwiched between a cathode and an anode. Oxygen reacts with electrons at the cathode to form oxygen ions, which are conducted through the ion-conducting ceramic electrolyte to the anode. At the anode, oxygen ions combine with available fuel (e.g., hydrogen and carbon monoxide) to form products (e.g.: water and carbon dioxide) thereby liberating electrons to produce electrical power. The technology can equally be run in reverse to form fuel gases and oxygen when supplied with appropriate reactants (e.g., water and carbon dioxide) and electrical power. In this case the technology is termed a solid oxide electrolysis cell. SOFC development has seen a multitude of approaches (anode, cathode or electrolyte supported, monolithic ceramic vs metallic interconnects, planar vs tubular and variants thereof). The prime challenge to commercialize the technology has been the simultaneous achievement of marketable price, reasonable performance, and useful lifetime. These drivers are closely related.

App Num: EP18746759.2
File Date: 2018-06-28
Pub Num: EP36464
Pub Date: 2023-11-01
Assignee:
Versa Power Systems Ltd
Inventors: Brown, Casy Cloudless
Luc, Khun Bong
Agency: Gritschneder, Sebastian
IPC: H01M 8/2485

FuelCell Energy also filed patent for a fuel cell system with an ejector for recycling exhaust
The fuel cell module has an anode section that outputs an anode exhaust stream, which is then split into an anode recycle stream and a system outlet stream. The ejector has a low pressure inlet that receives a suction stream and a motive inlet that receives a motive stream, both of which are portions of the anode recycle stream. The ejector outputs an ejector output stream, which is then used as an input stream for the anode section.
 
Publication/Patent Number: US20230178763A1
Publication Date: 2023-06-08
Application Number: US18/071,914
Filing Date: 2022-11-30
Inventor Brown, Casy Cloudless 
Assignee: Versa Power Systems Ltd  IPC: H01M8/04089

Proton-conducting ceramic fuel cell architecture

Publication/Patent Number: US11777105B2
Publication Date: 2023-10-03
Application Number: US17/942,468
Filing Date: 2022-09-12
Inventor Wood, Anthony   Tang, Zheng   Joia, Tahir
 Assignee: VERSA POWER SYSTEMS, LTD 
IPC: H01M8/10

Abstract: A method of manufacturing a proton-conducting fuel cell includes assembling a green anode-electrolyte half-cell by forming an anode substrate layer having an upper surface and a lower surface, forming an anode functional layer on the upper surface of the anode substrate layer, forming an electrolyte layer on an upper surface of the anode functional layer, and forming a stress balancing layer on the lower surface of the anode substrate layer. The method further includes positioning the green anode-electrolyte half-cell on kiln furniture inside a sintering kiln and sintering the green anode-electrolyte half-cell using SSRS to an anode-electrolyte half-cell.

Compact high temperature electrochemical cell stack architecture

Publication/Patent
Number: US11728494B2
Publication Date: 2023-08-15
Application Number: US16/668,344
Filing Date: 2019-10-30
Inventor Brown, Casy Cloudless   Luc, Khun Bong   Rankin, Cameron James 
Assignee: VERSA POWER SYSTEMS LTD 
IPC: H01M8/026

Abstract: An electrochemical cell unit comprises a first electrochemical cell comprising a first oxidant electrode and a first fuel electrode, and a second electrochemical cell comprising a second oxidant electrode and a second fuel electrode. An interconnect interposed between the first electrochemical cell and the second electrochemical cell. The interconnect comprises an interconnect main body defining a longitudinal channel along a longitudinal axis thereof. The interconnect main body includes a plurality of corrugations defining a plurality of fuel channels on a first surface of the interconnect main body facing the first electrochemical cell, and a plurality of oxidant channels on a second surface of the interconnect main body facing the second electrochemical cell. Each of the plurality of fuel channels and the plurality of oxidant channel positioned around the longitudinal channel.

SOLID OXIDE FUEL CELL SYSTEM WITH CARBON CAPTURE AND INCREASED EFFICIENCY
Publication/Patent Number: EP4193005A1
Publication Date: 2023-06-14
Application Number: EP21755566.3
Filing Date: 2021-08-02
Inventor Brown, Casy Cloudless
Assignee: Versa Power Systems Ltd  IPC: C25B15/021


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