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Timothy R Geary, 38Yorktown Hgts, NY

Timothy Geary Phones & Addresses

Yorktown Heights, NY   

Ardsley, NY   

Yonkers, NY   

33 Blanchard Ave, Dobbs Ferry, NY 10522    914-9685824   

Hopewell Junction, NY   

Mahopac, NY   

Bronx, NY   

McKeesport, PA   

Mentions for Timothy R Geary

Timothy Geary resumes & CV records

Resumes

Timothy Geary Photo 34

Timothy Geary

Timothy Geary Photo 35

Timothy Geary

Timothy Geary Photo 36

Manager Assistant At Enterprise Rent-A-Car

Location:
Greater New York City Area
Industry:
Automotive

Publications & IP owners

Us Patents

Elevated Pressure Operation Of Molten Carbonate Fuel Cells With Enhanced Co2 Utilization

US Patent:
2022035, Nov 3, 2022
Filed:
Jul 18, 2022
Appl. No.:
17/867324
Inventors:
- ANNANDALE NJ, US
- DANBURY CT, US
Timothy C. Geary - Stamford CT, US
International Classification:
H01M 8/14
H01M 8/0438
H01M 8/04746
Abstract:
Molten carbonate fuel cells (MCFCs) are operated at elevated pressure to provide increased operating voltage and/or enhanced COutilization with a cathode input stream having a low COcontent. It has been discovered that increasing the operating pressure of a molten carbonate fuel cell when using a low CO-content cathode input stream can provide unexpectedly large increases in operating voltage while also reducing or minimizing the amount of alternative ion transport and/or enhancing COutilization.

Elevated Pressure Operation Of Molten Carbonate Fuel Cells With Enhanced Co2 Utilization

US Patent:
2020017, Jun 4, 2020
Filed:
Nov 26, 2019
Appl. No.:
16/695349
Inventors:
- ANNANDALE NJ, US
- DANBURY CT, US
Timothy C. Geary - Stamford CT, US
International Classification:
H01M 8/0438
H01M 8/14
H01M 8/04746
Abstract:
Molten carbonate fuel cells (MCFCs) are operated at elevated pressure to provide increased operating voltage and/or enhanced COutilization with a cathode input stream having a low COcontent. It has been discovered that increasing the operating pressure of a molten carbonate fuel cell when using a low CO-content cathode input stream can provide unexpectedly large increases in operating voltage while also reducing or minimizing the amount of alternative ion transport and/or enhancing COutilization.

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