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All Federal Grant Awards
Cooperative Agreement DEEE0008851
Award Date
10/1/19
Completion Date
9/2/25
Dollars Obligated
$9.8M
Overview
Activity
9
Transactions
9
Subawards
Similar Awards
Federal Agency
Office of Energy Efficiency and Renewable Energy
Awardee
Orlando Utilities Commission (LEMUEVB1SA95)
Federal Grant Program
81.087
Assistance Type
Cooperative Agreement
Place of Performance
Edgewood, FL 32839, USA
Update #1
Update #2
DEMONSTRATION OF INTEGRATED HYDROGEN PRODUCTION AND CONSUMPTION FOR IMPROVED UTILITY OPERATIONS
Posted 9/23/19
5
1
2
Mod #
Description
ReasonForModification
Federal Obligation
Date
Not listed
DEMONSTRATION OF INTEGRATED HYDROGEN PRODUCTION AND CONSUMPTION FOR IMPROVED UTILITY OPERATIONS THE PROPOSED TECHNOLOGY ADDRESSES THE DEVELOPMENT OF A HIGHLY INTEGRATED SYSTEM THAT INCORPORATES POLYMER ELECTROLYTE MEMBRANE (PEM) BASED WATER ELECTROLYSIS FOR HYDROGEN (H2) PRODUCTION AND STORAGE, ELECTRICITY GENERATION PEM-BASED FUEL CELLS, AND H2-FUEL FOR REFUELING OF FUEL-CELL- ELECTRIC-VEHICLES (FCEV), WITH DISPATCH DECISIONS BASED ON GRID-LEVEL OPTIMIZATION CONTROLS. THE DISPATCH OF THE ELECTROLYZER WILL BE DESIGNED TO PROVIDE OPERATIONAL VALUE TO ORLANDO UTILITIES COMMISSION'S (OUC'S) GRID FROM PHOTOVOLTAIC (PV) SMOOTHING TO BASE LOAD CONSIDERATIONS. THE HYDROGEN THAT IS PRODUCED FROM THE ELECTROLYZER WILL BE EMPLOYED BY FCEVS AND FUEL CELL GENERATORS. MULTIPLE USAGE PROFILES WILL BE EXPLORED FOR THE FCEV, SUCH AS CONSUMER AND FLEET OPERATIONS FOR CONTINGENCY EVENTS. DISPATCH PROFILES FOR FUEL CELL GENERATOR SYSTEMS WILL BE EXPLORED OVER MULTIPLE USE CASES, SUCH AS GRID PEAK SHAVING, LOAD SHIFTING, PV SMOOTHING, AND CUSTOMER SERVICE MODELS SUCH AS DEMAND REDUCTION AND EMERGENCY BACK-UP POWER. THE ASSEMBLED TEAM AIMS TO DEMONSTRATE AN INTEGRATED SYSTEM THAT INCLUDES ELECTROLYZER, FUEL CELL, AND HYDROGEN STORAGE THAT WILL BE DISPATCHED TO PROVIDE VALUE TO UTILITY OPERATIONS, PARTICULARLY WITH RESPECT TO GRIDS THAT WILL HAVE EVER-INCREASING RENEWABLE ENERGY PENETRATION. THIS SYSTEM WILL ALSO BE USED TO DEMONSTRATE "STACKED BENEFITS", WHERE MULTIPLE USE CASES ARE CONSIDERED FOR A SINGLE SYSTEM. IN THIS PROJECT, THESE USE CASES INCLUDE SOLAR PV SMOOTHING, MOBILE BACK-UP POWER GENERATION, LOAD SHIFTING/PEAK SHAVING, AND EXTENDED DURATION ISLANDING OF A COMMERCIAL BUILDING. SPECIFIC OBJECTIVES OF THE PROGRAM INCLUDE: DEVELOPMENT AND IMPLEMENTATION OF UTILITY CONTROL ARCHITECTURE TO DISPATCH ELECTROLYZER AND FUEL CELL SYSTEMS OPTIMIZE DESIGN(S) AND ASSEMBLE INDIVIDUAL SYSTEMS (FUEL CELL, ELECTROLYZER, STORAGE, DISPENSING) FOR USE AS GRID ASSETS AT OUC HOST SITE DEMONSTRATION OF INTEGRATED HYDROGEN PRODUCTION AND CONSUMPTION FOR IMPROVED UTILITY OPERATIONS (E.G. GRID STABILITY/LOAD LEVELING, MOBILE REFUELING, AND ELECTRICITY GENERATION) DEVELOP AN ECONOMIC AND MARKET FEASIBILITY STUDY, DEMONSTRATING MULTIPLE VALUE STREAMS FOR HYDROGEN ILLUSTRATING INTEGRATED END-TO-END ELEMENTS OF HYDROGEN PRODUCTION, STORAGE, DISTRIBUTION, AND DISPENSING PATHWAYS.
$0
4/22/26
Not listed
DEMONSTRATION OF INTEGRATED HYDROGEN PRODUCTION AND CONSUMPTION FOR IMPROVED UTILITY OPERATIONS THE PROPOSED TECHNOLOGY ADDRESSES THE DEVELOPMENT OF A HIGHLY INTEGRATED SYSTEM THAT INCORPORATES POLYMER ELECTROLYTE MEMBRANE (PEM) BASED WATER ELECTROLYSIS FOR HYDROGEN (H2) PRODUCTION AND STORAGE, ELECTRICITY GENERATION PEM-BASED FUEL CELLS, AND H2-FUEL FOR REFUELING OF FUEL-CELL-ELECTRIC-VEHICLES (FCEV), WITH DISPATCH DECISIONS BASED ON GRID-LEVEL OPTIMIZATION CONTROLS. THE DISPATCH OF THE ELECTROLYZER WILL BE DESIGNED TO PROVIDE OPERATIONAL VALUE TO ORLANDO UTILITIES COMMISSION'S (OUC'S) GRID FROM PHOTOVOLTAIC (PV) SMOOTHING TO BASE LOAD CONSIDERATIONS. THE HYDROGEN THAT IS PRODUCED FROM THE ELECTROLYZER WILL BE EMPLOYED BY FCEVS AND FUEL CELL GENERATORS. MULTIPLE USAGE PROFILES WILL BE EXPLORED FOR THE FCEV, SUCH AS CONSUMER AND FLEET OPERATIONS FOR CONTINGENCY EVENTS. DISPATCH PROFILES FOR FUEL CELL GENERATOR SYSTEMS WILL BE EXPLORED OVER MULTIPLE USE CASES, SUCH AS GRID PEAK SHAVING, LOAD SHIFTING, PV SMOOTHING, AND CUSTOMER SERVICE MODELS SUCH AS DEMAND REDUCTION AND EMERGENCY BACK-UP POWER. THE ASSEMBLED TEAM AIMS TO DEMONSTRATE AN INTEGRATED SYSTEM THAT INCLUDES ELECTROLYZER, FUEL CELL, AND HYDROGEN STORAGE THAT WILL BE DISPATCHED TO PROVIDE VALUE TO UTILITY OPERATIONS, PARTICULARLY WITH RESPECT TO GRIDS THAT WILL HAVE EVER-INCREASING RENEWABLE ENERGY PENETRATION. THIS SYSTEM WILL ALSO BE USED TO DEMONSTRATE "STACKED BENEFITS", WHERE MULTIPLE USE CASES ARE CONSIDERED FOR A SINGLE SYSTEM. IN THIS PROJECT, THESE USE CASES INCLUDE SOLAR PV SMOOTHING, MOBILE BACK-UP POWER GENERATION, LOAD SHIFTING/PEAK SHAVING, AND EXTENDED DURATION ISLANDING OF A COMMERCIAL BUILDING. SPECIFIC OBJECTIVES OF THE PROGRAM INCLUDE: DEVELOPMENT AND IMPLEMENTATION OF UTILITY CONTROL ARCHITECTURE TO DISPATCH ELECTROLYZER AND FUEL CELL SYSTEMS OPTIMIZE DESIGN(S) AND ASSEMBLE INDIVIDUAL SYSTEMS (FUEL CELL, ELECTROLYZER, STORAGE, DISPENSING) FOR USE AS GRID ASSETS AT OUC HOST SITE DEMONSTRATION OF INTEGRATED HYDROGEN PRODUCTION AND CONSUMPTION FOR IMPROVED UTILITY OPERATIONS (E.G. GRID STABILITY/LOAD LEVELING, MOBILE REFUELING, AND ELECTRICITY GENERATION) DEVELOP AN ECONOMIC AND MARKET FEASIBILITY STUDY, DEMONSTRATING MULTIPLE VALUE STREAMS FOR HYDROGEN ILLUSTRATING INTEGRATED END-TO-END ELEMENTS OF HYDROGEN PRODUCTION, STORAGE, DISTRIBUTION, AND DISPENSING PATHWAYS.
$0
8/5/25
Not listed
DEMONSTRATION OF INTEGRATED HYDROGEN PRODUCTION AND CONSUMPTION FOR IMPROVED UTILITY OPERATIONS THE PROPOSED TECHNOLOGY ADDRESSES THE DEVELOPMENT OF A HIGHLY INTEGRATED SYSTEM THAT INCORPORATES POLYMER ELECTROLYTE MEMBRANE (PEM) BASED WATER ELECTROLYSIS FOR HYDROGEN (H2) PRODUCTION AND STORAGE, ELECTRICITY GENERATION PEM-BASED FUEL CELLS, AND H2-FUEL FOR REFUELING OF FUEL-CELL-ELECTRIC-VEHICLES (FCEV), WITH DISPATCH DECISIONS BASED ON GRID-LEVEL OPTIMIZATION CONTROLS. THE DISPATCH OF THE ELECTROLYZER WILL BE DESIGNED TO PROVIDE OPERATIONAL VALUE TO ORLANDO UTILITIES COMMISSION'S (OUC'S) GRID FROM PHOTOVOLTAIC (PV) SMOOTHING TO BASE LOAD CONSIDERATIONS. THE HYDROGEN THAT IS PRODUCED FROM THE ELECTROLYZER WILL BE EMPLOYED BY FCEVS AND FUEL CELL GENERATORS. MULTIPLE USAGE PROFILES WILL BE EXPLORED FOR THE FCEV, SUCH AS CONSUMER AND FLEET OPERATIONS FOR CONTINGENCY EVENTS. DISPATCH PROFILES FOR FUEL CELL GENERATOR SYSTEMS WILL BE EXPLORED OVER MULTIPLE USE CASES, SUCH AS GRID PEAK SHAVING, LOAD SHIFTING, PV SMOOTHING, AND CUSTOMER SERVICE MODELS SUCH AS DEMAND REDUCTION AND EMERGENCY BACK-UP POWER. THE ASSEMBLED TEAM AIMS TO DEMONSTRATE AN INTEGRATED SYSTEM THAT INCLUDES ELECTROLYZER, FUEL CELL, AND HYDROGEN STORAGE THAT WILL BE DISPATCHED TO PROVIDE VALUE TO UTILITY OPERATIONS, PARTICULARLY WITH RESPECT TO GRIDS THAT WILL HAVE EVER-INCREASING RENEWABLE ENERGY PENETRATION. THIS SYSTEM WILL ALSO BE USED TO DEMONSTRATE "STACKED BENEFITS", WHERE MULTIPLE USE CASES ARE CONSIDERED FOR A SINGLE SYSTEM. IN THIS PROJECT, THESE USE CASES INCLUDE SOLAR PV SMOOTHING, MOBILE BACK-UP POWER GENERATION, LOAD SHIFTING/PEAK SHAVING, AND EXTENDED DURATION ISLANDING OF A COMMERCIAL BUILDING. SPECIFIC OBJECTIVES OF THE PROGRAM INCLUDE: DEVELOPMENT AND IMPLEMENTATION OF UTILITY CONTROL ARCHITECTURE TO DISPATCH ELECTROLYZER AND FUEL CELL SYSTEMS OPTIMIZE DESIGN(S) AND ASSEMBLE INDIVIDUAL SYSTEMS (FUEL CELL, ELECTROLYZER, STORAGE, DISPENSING) FOR USE AS GRID ASSETS AT OUC HOST SITE DEMONSTRATION OF INTEGRATED HYDROGEN PRODUCTION AND CONSUMPTION FOR IMPROVED UTILITY OPERATIONS (E.G. GRID STABILITY/LOAD LEVELING, MOBILE REFUELING, AND ELECTRICITY GENERATION) DEVELOP AN ECONOMIC AND MARKET FEASIBILITY STUDY, DEMONSTRATING MULTIPLE VALUE STREAMS FOR HYDROGEN ILLUSTRATING INTEGRATED END-TO-END ELEMENTS OF HYDROGEN PRODUCTION, STORAGE, DISTRIBUTION, AND DISPENSING PATHWAYS.
$0
4/19/24
Not listed
DEMONSTRATION OF INTEGRATED HYDROGEN PRODUCTION AND CONSUMPTION FOR IMPROVED UTILITY OPERATIONS
$0
4/2/24
Not listed
DEMONSTRATION OF INTEGRATED HYDROGEN PRODUCTION AND CONSUMPTION FOR IMPROVED UTILITY OPERATIONS
$0
11/21/23