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Zero Trade-Off Carbon Capture
TS-076602 — The Bio-inspired MOF Advantage
Industrial CO2 capture is widely deployed at point-source emissions—such as power plants and cement factories—as well as in emerging Direct Air Capture installations. The dominant commercial technology, liquid amine scrubbing, relies on strong chemical bonds to deliver high capture cap…
  • College: College of Arts and Sciences (ASC)
  • Inventors: Wade, Casey; Bien, Caitlin
  • Licensing Officer: Dahlman, Jason "Jay"

Solar-Driven Adsorption Air Conditioning Using Advanced Porous Materials
TS-074344 — Air conditioning is a major driver of global electricity demand, peak load stress, and greenhouse gas emissions, particularly in hot and humid climates. Conventional vapor-compression systems rely on electricity-intensive compressors, struggle with efficient humidity control, and are poorly matche…
  • College: College of Arts and Sciences (ASC)
  • Inventors: Clark, Jordan; Ho, W.S. Winston; Wade, Casey
  • Licensing Officer: Ashouripashaki, Mandana

High‑Flux Nanocomposite Polyamide Membranes for Advanced Water Separation
TS-074143 — Across desalination, water reuse, and other separation markets, operators continue to face a fundamental tradeoff between membrane permeability and selectivity. Existing commercial polyamide membranes often sacrifice water flux to achieve high salt rejection, driving higher energy consumption, inc…
  • College: College of Engineering (COE)
  • Inventors: Ho, W.S. Winston
  • Licensing Officer: Ashouripashaki, Mandana

Nanoporous Cu–Ru Catalysts for Selective CO₂ Electrochemical Conversion
TS-073880 — Industrial CO₂ electroreduction remains limited by high energy input, poor selectivity, and low formation rates of valuable multi‑carbon products. Conventional copper catalysts often favor hydrogen evolution or low‑value C₁ products such as methane, while catalysts that improve selectivity…
  • College: College of Arts and Sciences (ASC)
  • Inventors: Co, Anne; Billy, Joshua; Coleman, Eric; Walz, Kendahl
  • Licensing Officer: Randhawa, Davinder

High-Selectivity Membranes for Hot H₂S/CO₂ Gas Separation
TS-073620 — Hydrogen sulfide (H₂S) is a highly toxic and corrosive impurity in syngas, natural gas, biogas, and sulfur plant tail gas. Its removal is essential for safety, regulatory compliance, and downstream processing such as carbon capture and sulfur recovery. However, H₂S is typically present with la…
  • College: College of Engineering (COE)
  • Inventors: Ho, W.S. Winston; Han, Yang; Rao, Shraavya
  • Licensing Officer: Ashouripashaki, Mandana

High-Pressure CO₂-Selective Membranes for Syngas Hydrogen Purification
TS-073586 — The transition to low-carbon energy and chemicals requires efficient separation of CO₂ from hydrogen-rich gas streams, particularly in high-pressure syngas environments such as coal or natural gas gasification. Existing separation technologies (e.g., solvent absorption or conventional membranes)…
  • College: College of Engineering (COE)
  • Inventors: Ho, W.S. Winston; Han, Yang
  • Licensing Officer: Ashouripashaki, Mandana

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

Polyguanidine Facilitated‑Transport Membranes for Industrial CO₂ Separation
TS-072990 — Amine solvent systems for post‑combustion capture remain costly and energy‑intensive, typically increasing the cost of electricity 70–80% and imposing a 25–40% energy penalty when retrofitted to coal plants. Membrane alternatives often lack the combination of very high CO₂ flux, high CO…
  • College: College of Engineering (COE)
  • Inventors: Ho, W.S. Winston; Han, Yang; Hu, Jingying
  • Licensing Officer: Ashouripashaki, Mandana

Fuel Cell-Enabled CO2-to-CO Conversion Using Ultra-Selective Membrane Technology
TS-072615 — The Need Efficient carbon dioxide (CO₂) utilization and separation remain critical challenges in energy, chemical, and environmental sectors. Existing processes for CO₂ conversion to carbon monoxide (CO) and for separating CO₂/CO mixtures are energy-intensive, costly, and often lack selectivit…
  • College: College of Engineering (COE)
  • Inventors: Ho, W.S. Winston; Han, Yang
  • Licensing Officer: Ashouripashaki, Mandana

Sustainable Ammonia and Hydrogen Production via Biomass-Fueled Chemical Looping
TS-072583 — The Need The ammonia industry is a major contributor to global CO₂ emissions, primarily due to its reliance on fossil fuels for hydrogen production and the energy-intensive air separation process for nitrogen. With over 500 million tons of CO₂ emitted annually from ammonia synthesis, there is a …
  • College: College of Engineering (COE)
  • Inventors: Fan, Liang-Shih; Joshi, Rushikesh Kishor; Kudva, Ishani Karki; Shinde, Shekhar
  • Licensing Officer: Ashouripashaki, Mandana

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