<?xml version="1.0" encoding="UTF-8"?><rss version="2.0"><channel><title>Energy, Environment &amp; Aerospace Licensing Opportunities | Utah State University</title><link>https://research.usu.edu/rii/tech-transfer/licensing-opportunities/energy-environment-aerospace.xml</link><description>Energy, Environment &amp; Aerospace licensing opportunities tracked by USU Technology Transfer.</description><image><url>https://templateresources.usu.edu/_resources/assets/images/U-State.png</url><title>Utah State University</title><link>https://research.usu.edu/</link></image><language>en-us</language><category>News</category><item><title>Calibration Methods for Mercury Detection</title><link>https://research.usu.edu/rii/tech-transfer/licensing-opportunities/technologies/calibration-methods-for-mercury-detection.php</link><description>Mercury detection is important in heavy-industry operations and environmental measurements. Mercury is a toxic substance released in multiple industries. Calibration ensures accuracy in mercury detection, so mercury levels can be reported correctly. Resea</description><pubDate>Friday, 26 June 2026</pubDate></item><item><title>Hypersonic Impact Method for Aerodynamics and Convective Heating (HI-MACH) Software</title><link>https://research.usu.edu/rii/tech-transfer/licensing-opportunities/technologies/hypersonic-impact-method-for-aerodynamics-and-convective-heating.php</link><description>Solving aerodynamic forces at high speeds is computationally difficult. Most current methods use computational fluid dynamics (CFD), a very complex and slow process, even on supercomputers. The HI-MACH software package allows aerospace engineers to quickl</description><pubDate>Tuesday, 26 May 2026</pubDate></item><item><title>Field-deployable Calibrator for Gas Phase Elemental and Oxidized Mercury Compounds</title><link>https://research.usu.edu/rii/tech-transfer/licensing-opportunities/technologies/field-deployable-calibrator.php</link><description>This patented technology provides an improved system for detecting and speciating gaseous mercury in air, using a dual-channel approach. The first channel measures total mercury, and the other measures elemental mercury after removing oxidized forms. Thes</description><pubDate>Wednesday, 8 April 2026</pubDate></item><item><title>Viologen Redox Flow Battery</title><link>https://research.usu.edu/rii/tech-transfer/licensing-opportunities/technologies/viologen-redox-flow-battery.php</link><description>USU researchers have developed a series of low-cost, highly water soluble viologen compounds as anode materials for pH neutral aqueous organic redox flow battery (AORFB) applications. Pairing with water soluble TEMPO or Ferrocene cathode materials, the AO</description><pubDate>Friday, 29 August 2025</pubDate></item><item><title>Estimating Impulse Response From Seismological Data</title><link>https://research.usu.edu/rii/tech-transfer/licensing-opportunities/technologies/estimating-impulse-response-from-seismological-data.php</link><description>In construction of large buildings, impulse response and resonance frequency are considered so that building designs can be resilient to local seismological threats. This technology provides a method by which to estimate the impulse response of a geograph</description><pubDate>Wednesday, 27 August 2025</pubDate></item><item><title>Minimally Intrusive, Dual-Band, Fiberoptic Sensing System for High Enthalpy Exhaust Plumes</title><link>https://research.usu.edu/rii/tech-transfer/licensing-opportunities/technologies/minimally-intrusive-dual-band-fiberoptic-sensing-system.php</link><description>In the domain of rocket propulsion, to combat the difficulty caused by high temperatures and velocities to obtain accurate exhaust plume measurements, the propulsion research lab at Utah State University has developed a process through spectrometry to mea</description><pubDate>Tuesday, 26 August 2025</pubDate></item><item><title>High-Power Field-Focusing Circuit Topology for Dynamic Wireless Power Transfer Systems</title><link>https://research.usu.edu/rii/tech-transfer/licensing-opportunities/technologies/high-power-field-focusing-circuit-topology.php</link><description>USU Researchers have developed a self-regulating system that utilizes field-focusing techniques to maximize efficient dynamic wireless power transfer, primarily for electric vehicles. The technology has been tested in laboratory conditions and data acquis</description><pubDate>Thursday, 10 April 2025</pubDate></item><item><title>Porous Thermal Barrier Coating Formation Technology for Carbon Fiber Reinforced Composites through Flame Spraying</title><link>https://research.usu.edu/rii/tech-transfer/licensing-opportunities/technologies/porous-thermal-barrier-coating-formation-technology.php</link><description>Thermal barrier coatings are essential to protect materials in high-temperature environments. A team of researchers at the Korean Institute of Science and Technology and Utah State University has developed a flame-spraying method where a TBC is applied to</description><pubDate>Tuesday, 1 April 2025</pubDate></item><item><title>Health Effect Assessment of Landscape (HEAL)</title><link>https://research.usu.edu/rii/tech-transfer/licensing-opportunities/technologies/health-effect-assessment-of-landscape.php</link><description>HEAL (Health Effect Assessment of Landscape) is a unique technology that creates predictions of possible health outcomes related to urban landscaping projects. </description><pubDate>Thursday, 20 March 2025</pubDate></item><item><title>Bi-metal Heat Exchanger design using coupled PBF and DED AM processes</title><link>https://research.usu.edu/rii/tech-transfer/licensing-opportunities/technologies/bi-metal-heat-exchanger-design.php</link><description>The Bi-Metal Heat Exchanger Design is a heat exchanger that focuses on monetary cost optimization and can be implemented with concentrated solar power applications. </description><pubDate>Tuesday, 18 March 2025</pubDate></item><item><title>Adaptive Control for Zero-Voltage Switching of a T-type Bridge in Unfolding-Based AC-DC Converter System (ASPIRE)</title><link>https://research.usu.edu/rii/tech-transfer/licensing-opportunities/technologies/adaptive-control-for-zero-voltage-switching.php</link><description>A controller method for determining the minimum current and minimum time required for zero-voltage switching in a T-type bridge-based resonant AC-DC converter to maximize efficiency.</description><pubDate>Friday, 14 March 2025</pubDate></item><item><title>Green Rockets Compressed Air Oxidizer</title><link>https://research.usu.edu/rii/tech-transfer/licensing-opportunities/technologies/green-rockets-compressed-air-oxidizer.php</link><description>A "green" hybrid rocket thruster has been devised by USU researchers as an alternative to more commonly used propellants such as the monopropellant hydrazine and cold gas thrusters. In addition to providing excellent control of the ignition system, the hy</description><pubDate>Friday, 18 October 2024</pubDate></item></channel></rss>