The U.S. Department of Energy's (DOE) Office of Energy Efficiency and Renewable Energy (EERE) awarded a $2,400,000 Cooperative Agreement under the Renewable Energy Research and Development (CFDA 81.087) program to Georgia Tech Research Corp. The goal of this 20-month project is to discover new electrolyte, electrode, and catalyst materials for low-cost, highly efficient, and durable proton conducting solid oxide electrolysis cells (P-SOECs) to enable cost-effective hydrogen production. Key...
This federal Cooperative Agreement award, provided by the U.S. Department of Energy's Office of Energy Efficiency and Renewable Energy under the Renewable Energy Research and Development program (CFDA 81.087), aims to demonstrate low-temperature hydrogen production from proton-conducting solid oxide electrolysis cell (P-SOEC) technology. The $3,141,250 award will fund a series of activities over 3 budget periods, including materials development, interface engineering, manufacturing...
This $6,602,155 Cooperative Agreement award, funded by the U.S. Department of Energy's Office of Energy Efficiency and Renewable Energy (EERE) under the Renewable Energy Research and Development program (CFDA 81.087), will enable Power To Hydrogen LLC to demonstrate its advanced liquid alkaline-based electrolyzer cell design at a commercial-scale 250-kW stack module. The project aims to develop a U.S. supplier base capable of GW-scale manufacturing for key electrolyzer components, including...
The U.S. Department of Energy's Office of Energy Efficiency and Renewable Energy (EERE) awarded a $3,577,398 Cooperative Agreement under the Renewable Energy Research and Development program (CFDA 81.087) to Georgia Tech Research Corp. The objective of this 12-month project is to combine state-of-the-art alkaline polymer electrolyzer components with advanced manufacturing methods and cell operating conditions to achieve DOE goals of 2.0 A/cm2 operation at $400/kW electrolyzer system cost. As...
This Cooperative Agreement award, with a total funding of $4,589,582, was granted by the U.S. Department of Energy's Office of Energy Efficiency and Renewable Energy (EERE) under the Renewable Energy Research and Development program (CFDA 81.087). The objective of this project is to develop scalable, large-format, proton-conducting solid oxide electrolyte cells (P-SOECs) to generate hydrogen at an electrolyzing current density of 1 A/cm2 at 1.3 V/cell and 550°C, with a high Faradaic efficiency...
The federal Cooperative Agreement award, with a total funding of $2,600,196, was granted by the U.S. Department of Energy's Office of Energy Efficiency and Renewable Energy (EERE) under the Renewable Energy Research and Development program (CFDA 81.087). The award aims to develop an advanced metal-supported solid oxide electrolysis cell (MS-SOEC) technology for cost-effective hydrogen production with enhanced durability and operational resilience. The project will be conducted by Chemtronergy...
The Heartland Hydrogen Hub is a $20,000,000 Cooperative Agreement awarded by the U.S. Department of Energy (DOE) under the Clean Energy Demonstrations program (CFDA 81.255). The project aims to leverage the Midwest region's abundant energy resources to help decarbonize the agricultural sector's production of fertilizer and decrease the regional cost of clean hydrogen. Key initiatives include: Developing hydrogen production, storage, and distribution infrastructure across North Dakota, South...
The Department of Energy (DOE) Office of Energy Efficiency and Renewable Energy awarded a $999,975 Cooperative Agreement to Louisiana State University (LSU) on February 1, 2024 under the Renewable Energy Research and Development program (CFDA 81.087). The overarching goal of this 1-year project is to develop a safe, inexpensive, and recyclable hydrogen storage and generation system based on formate dehydrogenation and bicarbonate hydrogenation reactions. The primary objective is to create...
This $4,902,057 Cooperative Agreement award from the U.S. Department of Energy's Office of Energy Efficiency and Renewable Energy (CFDA 81.087 Renewable Energy Research and Development) aims to demonstrate the accelerated discovery, design, and laser convergent manufacturing of low-temperature (< 650°C) oxygen-conducting solid oxide electrolyzer cells (LT-O-SOEC) with a minimum active area > 15 cm2. The award will support objectives such as designing and validating novel electrolyte,...
This Cooperative Agreement award from the U.S. Department of Energy's Office of Energy Efficiency and Renewable Energy (CFDA 81.087 Renewable Energy Research and Development) provides $5,000,000 to West Virginia University Research Corporation to integrate high-temperature solid oxide electrolysis (HTSE) with solar concentrator-thermal energy storage (TES) to generate green hydrogen for further use in syngas and other fuel production. The project aims to design and validate an innovative...