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Hybrid Membrane–Adsorption Process for Efficient Direct Air Capture
TS-073184 — Direct air capture (DAC) technologies are essential for meeting global carbon‑reduction goals, yet most current systems remain limited by high energy demand, high cost, and materials with insufficient stability. Traditional solid‑sorbent DAC approaches require significant thermal input for reg…
  • College: College of Engineering (COE)
  • Inventors: Ho, W.S. Winston; Han, Yang; Huang, Yi-Chen
  • Licensing Officer: Ashouripashaki, Mandana

Novel Operational Strategies for Fixed-Bed Redox Chemical Looping Systems
TS-070630 — The Need Fixed bed chemical looping systems offer operational simplicity and minimal attrition compared to moving bed systems, but they suffer from transient behaviors like feed breakthrough, uneven solid conversion, and coking. These issues compromise efficiency, scalability, and product consistenc…
  • College: College of Engineering (COE)
  • Inventors: Fan, Liang-Shih; Joshi, Rushikesh Kishor; Sunny, Ashin
  • Licensing Officer: Ashouripashaki, Mandana

Methods to produce high purity tritium gas
TS-067793 — The technology is a device and method for producing high purity tritium gas by irradiating a lithium composition within a gas cell that selectively allows tritium to diffuse while blocking other byproducts, ensuring efficient and direct collection of pure tritium without extensive purification. This system is designed to enhance the purity, efficiency, and scalability of tritium production for various industrial and research applications.
The production of high purity tritium gas is critical for applications in nuclear fusion, radioluminescent devices, and scientific research. Current methods for tritium production often result in contaminants like helium and other gases, requiring additional purification processes that are costly …
  • College: College of Engineering (COE)
  • Inventors: Cao, Lei Raymond; Van Zile, Matthew
  • Licensing Officer: Ashouripashaki, Mandana

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