Arvind Rajendran
Arvind Rajendran
Professor of Chemical Engineering, University of Alberta
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Cited by
Cited by
Simulated moving bed chromatography for the separation of enantiomers
A Rajendran, G Paredes, M Mazzotti
Journal of Chromatography A 1216 (4), 709-738, 2009
A scalable metal-organic framework as a durable physisorbent for carbon dioxide capture
JB Lin, TTT Nguyen, R Vaidhyanathan, J Burner, JM Taylor, H Durekova, ...
Science 374 (6574), 1464-1469, 2021
Multiobjective Optimization of a Four-Step Adsorption Process for Postcombustion CO2 Capture Via Finite Volume Simulation
R Haghpanah, A Majumder, R Nilam, A Rajendran, S Farooq, IA Karimi, ...
Industrial & Engineering Chemistry Research 52 (11), 4249-4265, 2013
CO2 capture from dry flue gas by vacuum swing adsorption: A pilot plant study
S Krishnamurthy, VR Rao, S Guntuka, P Sharratt, R Haghpanah, ...
AIChE Journal 60 (5), 1830-1842, 2014
Cycle synthesis and optimization of a VSA process for postcombustion CO2 capture
R Haghpanah, R Nilam, A Rajendran, S Farooq, IA Karimi
AIChE Journal 59 (12), 4735-4748, 2013
Do adsorbent screening metrics predict process performance? A process optimisation based study for post-combustion capture of CO2
AK Rajagopalan, AM Avila, A Rajendran
International Journal of Greenhouse Gas Control 46, 76-85, 2016
Prediction of MOF Performance in Vacuum Swing Adsorption Systems for Postcombustion CO2 Capture Based on Integrated Molecular Simulations, Process …
TD Burns, KN Pai, SG Subraveti, SP Collins, M Krykunov, A Rajendran, ...
Environmental science & technology 54 (7), 4536-4544, 2020
Simultaneous Measurement of Swelling and Sorption in a Supercritical CO2−Poly(methyl methacrylate) System
A Rajendran, B Bonavoglia, N Forrer, G Storti, M Mazzotti, M Morbidelli
Industrial & engineering chemistry research 44 (8), 2549-2560, 2005
Harnessing the power of machine learning for carbon capture, utilisation, and storage (CCUS)–a state-of-the-art review
Y Yan, TN Borhani, SG Subraveti, KN Pai, V Prasad, A Rajendran, ...
Energy & Environmental Science 14 (12), 6122-6157, 2021
Microparticle characterization using digital holography
E Darakis, T Khanam, A Rajendran, V Kariwala, TJ Naughton, AK Asundi
Chemical Engineering Science 65 (2), 1037-1044, 2010
Sorption and swelling of semicrystalline polymers in supercritical CO2
B Bonavoglia, G Storti, M Morbidelli, A Rajendran, M Mazzotti
Journal of Polymer Science Part B: Polymer Physics 44 (11), 1531-1546, 2006
Measuring and modeling supercritical adsorption in porous solids. Carbon dioxide on 13X zeolite and on silica gel
T Hocker, A Rajendran, M Mazzotti
Langmuir 19 (4), 1254-1267, 2003
Energy and cost estimates for capturing CO2 from a dry flue gas using pressure/vacuum swing adsorption
N Susarla, R Haghpanah, IA Karimi, S Farooq, A Rajendran, LSC Tan, ...
Chemical Engineering Research and Design 102, 354-367, 2015
Design of preparative-supercritical fluid chromatography
A Rajendran
Journal of Chromatography A 1250, 227-249, 2012
Machine learning-based multiobjective optimization of pressure swing adsorption
SG Subraveti, Z Li, V Prasad, A Rajendran
Industrial & Engineering Chemistry Research 58 (44), 20412-20422, 2019
Techno-economic assessment of optimised vacuum swing adsorption for post-combustion CO2 capture from steam-methane reformer flue gas
SG Subraveti, S Roussanaly, R Anantharaman, L Riboldi, A Rajendran
Separation and Purification Technology 256, 117832, 2021
Reliable measurement of near-critical adsorption by gravimetric method
R Pini, S Ottiger, A Rajendran, G Storti, M Mazzotti
Adsorption 12 (5-6), 393-403, 2006
Cycle design and optimization of pressure swing adsorption cycles for pre-combustion CO2 capture
SG Subraveti, KN Pai, AK Rajagopalan, NS Wilkins, A Rajendran, ...
Applied energy 254, 113624, 2019
Dynamic column breakthrough experiments for measurement of adsorption equilibrium and kinetics
NS Wilkins, A Rajendran, S Farooq
Adsorption 27 (3), 397-422, 2021
Equilibrium theory–based analysis of nonlinear waves in separation processes
M Mazzotti, A Rajendran
Annual review of chemical and biomolecular engineering 4, 119-141, 2013
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