Funding will support the project team's small-scale research and development of a high-throughput, performance-specific, and cost-effective generative materials design and discovery framework tailored for hydrogen (H2) fueled gas turbine technologies, applicable to power generation and transportation industries.
Funding will support the project team's small-scale research and development of Structured Plasma Cell-Thermionic Energy Conversion (SPACE-TEC), a nuclear fuel technology that directly converts nuclear heat into electricity, eliminating the need for a conventional power generation system.
Funding will support the project team's small-scale research and development of a robotic-assisted laser joining technology for the purpose of enabling robust, high-temperature-resistant, and hermetic joining of complex and large silicon carbide (SiC)-based materials.
Funding will support the project team's small-scale research and development of a scalable package for quasi-two-level super switches, designed for efficient high-voltage, high-frequency alternating current (AC) to direct current (DC) conversion.
Funding will support the project team's small-scale research and development to integrate and enhance the transmission and distribution capacity of existing alternating current (AC) lines by blending with the high voltage direct current (DC) energy networks.
Funding will support the project team's small-scale research and development of a low-pressure and lower temperature, and fully electric, green ammonia (NH3) production photoreactor technology to advance dispatchable, energy and fuel infrastructures.
Funding will support the project team's small-scale research and development of a graphite digestion technology for the purpose of providing significant volume reduction of spent nuclear fuel from high temperature gas-cooled reactors.
The Technologies to Emend and Obviate SYnthetic Nitrogen's Toll on Emissions (TEOSYNTE) program supports projects that focus on plant and microbial bio-design strategies that reduce the need to apply synthetic nitrogen fertilizer on corn and sorghum fields while maintaining crop yields.
DOE is proposing to expand the boundary of the hunting area on the Idaho National Laboratory (INL) Site that is available to the public for hunting…
This Amended Determination follows the approval of additional project performers, project locations, and new retrofitting construction to finalize the development of a scalable manufacturing process for high-entropy alloy (HEA) catalysts for ammonia oxidation with enhanced catalytic activity, selectivity, and stability.