Faculty profile
Arvind Rajendran
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Research
Latest papers
Functionality over Order: Decoupling Chemical and Structural Contributions in CO2/CH4 Separation by Covalent Organic Frameworks.
Journal of the American Chemical Society · 2026
Covalent Organic Frameworks via In Situ Monomer Release for Humid CO2 Uptake.
Journal of the American Chemical Society · 2025
Identification of Metal-Organic Frameworks for near Practical Energy Limit CO2 Capture from Wet Flue Gases: An Integrated Atomistic and Process Simulation Screening of Experimental MOFs.
ACS central science · 2025
Latest funding
- $168,000
Optimized adsorption processes for next-generation adsorbents
NSERC · 2019 · Principal investigator
- $569,413
On-site adsorptive oxygen generators and helium purification systems: Design, optimization and scale-up
NSERC · 2019 · Principal investigator
- $25,000
Sorbent Screening and Optimization of an Oxygen Purification Process****
NSERC · 2018 · Principal investigator
13 publications.
Functionality over Order: Decoupling Chemical and Structural Contributions in CO2/CH4 Separation by Covalent Organic Frameworks.
Khata S, Maheedhara VS, Karak S, Sadhukhan A, Nagaraj V, Nehra E, Wonanke ADD, Addicoat MA, Nishiyama Y, Daschakraborty S, Varghese B, Sawada JA, Maiti PK, Rajendran A, Kaisare NS, Banerjee R
Covalent Organic Frameworks via In Situ Monomer Release for Humid CO2 Uptake.
Sadhukhan A, Ravuru SS, Das A, Nehra E, Paul S, Khan GR, Addicoat MA, Nishiyama Y, Daschakraborty S, Rajendran A, Banerjee R
Identification of Metal-Organic Frameworks for near Practical Energy Limit CO2 Capture from Wet Flue Gases: An Integrated Atomistic and Process Simulation Screening of Experimental MOFs.
Kwon O, Gibaldi M, Pai KN, Rajendran A, Woo TK
The Challenge of Water Competition in Physical Adsorption of CO2 by Porous Solids for Carbon Capture Applications - A Short Perspective.
Rajendran A, Shimizu GKH, Woo TK
How Can (or Why Should) Process Engineering Aid the Screening and Discovery of Solid Sorbents for CO2 Capture?
Rajendran A, Subraveti SG, Pai KN, Prasad V, Li Z
Can a computer "learn" nonlinear chromatography?: Physics-based deep neural networks for simulation and optimization of chromatographic processes.
Subraveti SG, Li Z, Prasad V, Rajendran A
A scalable metal-organic framework as a durable physisorbent for carbon dioxide capture.
Lin JB, Nguyen TTT, Vaidhyanathan R, Burner J, Taylor JM, Durekova H, Akhtar F, Mah RK, Ghaffari-Nik O, Marx S, Fylstra N, Iremonger SS, Dawson KW, Sarkar P, Hovington P, Rajendran A, Woo TK, Shimizu GKH
Special issue on the 13th Brazilian meeting on adsorption.
Cavalcante CL, Bastos-Neto M, Rodrigues AE, Rajendran A
Prediction of MOF Performance in Vacuum Swing Adsorption Systems for Postcombustion CO2 Capture Based on Integrated Molecular Simulations, Process Optimizations, and Machine Learning Models.
Burns TD, Pai KN, Subraveti SG, Collins SP, Krykunov M, Rajendran A, Woo TK
Computational fluid dynamics study of viscous fingering in supercritical fluid chromatography.
Subraveti SG, Nikrityuk P, Rajendran A
Optimized adsorption processes for next-generation adsorbents
Principal investigators: Rajendran, Arvind
Keywords: Adsorption separation processes; Air separation; CO2 capture; Machine Learning; Process optimization; Process Superstructures
On-site adsorptive oxygen generators and helium purification systems: Design, optimization and scale-up
Principal investigators: Rajendran, Arvind A
Keywords: Adsorption Separation; Computational Fluid Dynamics; Helium purification; Oxygen purification; Process optimization
Sorbent Screening and Optimization of an Oxygen Purification Process****
Principal investigators: Rajendran, Arvind
CREATE Training Program in Carbon Capture
Principal investigators: Shimizu, George
Optimized adsorption processes for CO2 capture
Principal investigators: Rajendran, Arvind
Ethane recovery from residue gas by adsorption processes: A feasibility study
Principal investigators: Rajendran, Arvind
Ethane recovery from residue gas by adsorption processes: A feasibility study
Principal investigators: Rajendran, Arvind
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
Frequent collaborators
- Zukui Li and Vinay Prasad: 3 shared papers
- Arvind Rajendran and Zukui Li: 2 shared papers
- Arvind Rajendran and Vinay Prasad: 2 shared papers
- Arvind Rajendran and Petr Nikrityuk: 1 shared paper
- Chemical and Materials Engineering
Co-authors at University of Alberta, colored by department. Thicker lines mean more shared papers; select anyone to open their profile and their own map.
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