Precision Steam Generation for High-Temperature Electrolysis
ID: BA-1588Type: Special Notice
Overview

Buyer

ENERGY, DEPARTMENT OFENERGY, DEPARTMENT OFBATTELLE ENERGY ALLIANCE–DOE CNTRIdaho Falls, ID, 83415, USA

NAICS

All Other Miscellaneous Electrical Equipment and Component Manufacturing (335999)

PSC

UTILITIES- ELECTRIC (S112)
Timeline
    Description

    The Department of Energy, specifically the Battelle Energy Alliance at the Idaho National Laboratory, is seeking industry partners to license an innovative technology for Precision Steam Generation aimed at enhancing high-temperature electrolysis systems. The objective is to develop a reliable method for generating hydrogen-steam mixtures that addresses the challenges of fluctuating flow rates and pressure variations, while utilizing low-grade waste heat efficiently. This technology is crucial for hydrogen production and energy efficiency in various applications, including hydrogen electrolysis systems, industrial heating, and renewable energy integration. Interested companies should contact the Technology Deployment department at td@inl.gov for collaboration opportunities, as the focus is on licensing rather than procurement or hiring services.

    Point(s) of Contact
    Technology Deployment
    td@inl.gov
    Files
    No associated files provided.
    Lifecycle
    Title
    Type
    Similar Opportunities
    INL Innovation Spotlight Efficient Protonic Ceramic Power: Dual-Mode Hydrogen and Electricity Generation
    Energy, Department Of
    The Department of Energy, through the Battelle Energy Alliance at the Idaho National Laboratory (INL), is seeking partnerships to advance its innovative technology in Efficient Protonic Ceramic Power, which enables dual-mode hydrogen production and electricity generation. This opportunity focuses on the development of a reversible solid oxide cell technology that operates efficiently at lower temperatures, addressing the critical need for sustainable energy conversion and storage solutions in the context of a global shift towards renewable energy. The technology, utilizing a high-performance PNC oxide material, offers enhanced efficiency, durability, and versatility for applications in renewable energy storage, hydrogen production, and power generation. Interested parties can engage with INL for licensing opportunities and further discussions by contacting Andrew Rankin at andrew.rankin@inl.gov.
    Tech Licensing Opportunity: Realtime Electrochemical Waveform Control with Integrated Performance Monitoring
    Energy, Department Of
    The Department of Energy, through the Battelle Energy Alliance, is offering a technology licensing opportunity for a novel system known as Realtime Electrochemical Waveform Control with Integrated Performance Monitoring. This technology aims to enhance the performance and efficiency of electrochemical devices, such as batteries and fuel cells, by enabling continuous performance analytics and optimization without interrupting operations. The integration of real-time waveform analysis addresses significant challenges in the electrolysis and fuel cell industries, particularly the need for sophisticated performance monitoring in large-scale systems. Interested parties can reach out to Andrew Rankin at andrew.rankin@inl.gov for further details, and additional information about licensing opportunities can be found at https://inl.gov/technology-deployment/.
    INL Innovation Spotlight H2 CURE: Transforming Carbon Emissions into Clean Hydrogen Energy
    Energy, Department Of
    The Department of Energy, through the Battelle Energy Alliance at the Idaho National Laboratory, is seeking partners for the H2 CURE initiative, which focuses on transforming carbon emissions into clean hydrogen energy. This innovative technology aims to convert CO2 into hydrogen while achieving net-negative emissions, thereby addressing the urgent need for sustainable industrial processes and contributing to global emission reduction efforts. The H2 CURE process not only produces hydrogen for thermal energy applications but also generates a commercially viable carbonate salt byproduct, enhancing its economic appeal. Interested parties can reach out to Andrew Rankin at andrew.rankin@inl.gov for further engagement and to explore licensing opportunities related to this technology.
    INL Innovation Spotlight Precision Enhancement for Thermocouples: A Leap in Measurement Accuracy
    Energy, Department Of
    The Department of Energy, through the Battelle Energy Alliance at the Idaho National Laboratory (INL), is seeking partnerships to commercialize an innovative technology aimed at enhancing the precision of thermocouples, which are critical for accurate temperature measurement across various industries. This technology utilizes ohmic heating to stabilize thermocouples, significantly improving their accuracy and lifespan while addressing the common issue of accuracy drift, particularly in high-temperature or radiation environments. With applications spanning manufacturing, aerospace, energy production, and healthcare, this advancement represents a significant leap in measurement reliability. Interested parties can learn more about licensing opportunities by contacting Andrew Rankin at andrew.rankin@inl.gov.
    High-Temperature Compact Heat Exchangers for Harsh Environments
    Energy, Department Of
    The Department of Energy, through the Battelle Energy Alliance at the Idaho National Laboratory, is seeking industry partners to license innovative high-temperature compact heat exchangers (CHXs) designed for harsh environments. The objective is to develop CHXs utilizing refractory metal designs with embedded sensors that enhance performance and reliability, addressing critical limitations of existing nickel-based alloy solutions, such as temperature constraints and corrosion issues. These advanced CHXs are crucial for applications in power generation, chemical processing, and metallurgy, offering significant improvements in durability, energy efficiency, and cost savings. Interested parties can reach out to the Technology Deployment department at td@inl.gov for collaboration opportunities.
    Catalysts with Tunable Electrocatalytic Behavior for CO₂ Conversion
    Energy, Department Of
    The Department of Energy, through the Battelle Energy Alliance at the Idaho National Laboratory, is seeking industry partners to license innovative catalysts with tunable electrocatalytic behavior for CO₂ conversion. The objective is to address significant challenges in current CO₂ electrochemical conversion systems, including low product selectivity, rigid system designs, and economic constraints, by introducing a supported-metal catalyst that allows for precise control over catalytic behavior and product output. This technology is particularly relevant for carbon-intensive industries and chemical manufacturing, enhancing the economic viability of carbon capture, utilization, and storage initiatives. Interested parties can reach out to the Technology Deployment department at td@inl.gov for collaboration opportunities, as the focus is on licensing intellectual property rather than procurement or hiring services.
    Efficient Additive Manufacturing for Advanced U-X Nuclear Fuel Alloys
    Energy, Department Of
    The Department of Energy, through the Battelle Energy Alliance at the Idaho National Laboratory, is seeking industry partners to license innovative technology for efficient additive manufacturing of advanced U-X nuclear fuel alloys. The objective is to revolutionize the production of U-X compounds, such as U3Si2 and U-Mo alloys, by utilizing a patented Laser Engineered Net Shaping (LENS) process that streamlines manufacturing, reduces costs, and enhances safety compared to traditional methods. This technology is crucial for applications in commercial nuclear reactors, research reactors, and defense and space sectors, facilitating the production of next-generation accident-tolerant fuels. Interested companies should contact the Technology Deployment department at td@inl.gov for collaboration opportunities, as the focus is on licensing rather than procurement or hiring services.
    Enhanced Frequency Response for Run-of-River Hydropower Plants
    Energy, Department Of
    The Department of Energy is seeking collaboration with industry partners to license an innovative control policy aimed at enhancing frequency response for run-of-river hydropower plants (RoR HPPs). The objective is to integrate energy storage systems to improve the stability and operational efficiency of these plants, enabling them to provide grid support and facilitate the formation of microgrids. This technology is particularly significant as it addresses the need for improved grid management and resilience, especially for the thousands of RoR HPPs across the U.S. Interested companies can reach out to the Technology Deployment department at Idaho National Laboratory via email at td@inl.gov for further engagement regarding licensing opportunities.
    Transforming Biomass Preprocessing for Advanced Gasification
    Energy, Department Of
    The Department of Energy, specifically the Battelle Energy Alliance at the Idaho National Laboratory, is seeking industry partners to license innovative technologies aimed at transforming biomass preprocessing for advanced gasification. The objective is to develop efficient and scalable methods for preparing biomass feedstock, addressing challenges such as high energy demands and inconsistent particle morphology that hinder gasification processes. This initiative is crucial for enhancing the performance of gasification systems, supporting renewable energy projects, and facilitating advancements in biomass utilization. Interested companies can reach out to the Technology Deployment department at td@inl.gov for collaboration opportunities, as the focus is on licensing intellectual property rather than procurement or hiring services.
    INL Innovation Spotlight LVDT Intrinsic Temperature Measurement: Revolutionizing Precision Sensing
    Energy, Department Of
    The Department of Energy, through the Battelle Energy Alliance at the Idaho National Laboratory (INL), is seeking innovative solutions for the LVDT Intrinsic Temperature Measurement technology aimed at enhancing precision sensing in material test reactors. This opportunity focuses on the development of a method that utilizes Linear Variable Differential Transformers (LVDTs) to directly measure internal temperatures, thereby improving accuracy and reliability in extreme conditions, particularly for applications in medical, aerospace, and military sectors. The technology is currently at Technology Readiness Level 4, validated in a laboratory environment, and is protected by a US Provisional Patent Application. Interested parties can engage with INL for licensing opportunities and further discussions by contacting Andrew Rankin at andrew.rankin@inl.gov.