Amitava Sarkar
Amitava Sarkar
Corporate Research Scientist for North America, TOTAL SE (Resident Visiting Scientist, Stanford
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Fischer–Tropsch synthesis: morphology, phase transformation and particle size growth of nano-scale particles
A Sarkar, D Seth, AK Dozier, JK Neathery, HH Hamdeh, BH Davis
Catalysis letters 117 (1), 1-17, 2007
Fischer− Tropsch Synthesis: Assessment of the Ripening of Cobalt Clusters and Mixing between Co and Ru Promoter via Oxidation− Reduction-Cycles over Lower Co-Loaded Ru− Co …
G Jacobs, A Sarkar, Y Ji, M Luo, A Dozier, BH Davis
Industrial & engineering chemistry research 47 (3), 672-680, 2008
Selective hydrogenation of 1, 3-butadiene in mixture with isobutene on a Pd/α-alumina catalyst in a semi-batch reactor
D Seth, A Sarkar, FTT Ng, GL Rempel
Chemical engineering science 62 (17), 4544-4557, 2007
A lumped parameter model for effective moisture diffusivity in air drying of foods
D Seth, A Sarkar
Food and Bioproducts Processing 82 (3), 183-192, 2004
Optimization Approach to the Reduction of CO2 Emissions for Syngas Production Involving Dry Reforming
S Afzal, D Sengupta, A Sarkar, M El-Halwagi, N Elbashir
ACS Sustainable Chemistry & Engineering 6 (6), 7532-7544, 2018
Thermal pyrolysis of polypropylene: effect of reflux-condenser on the molecular weight distribution of products
D Seth, A Sarkar
Chemical engineering science 59 (12), 2433-2445, 2004
Fischer–Tropsch Synthesis: Characterization Rb Promoted Iron Catalyst
A Sarkar, G Jacobs, Y Ji, HH Hamdeh, BH Davis
Catalysis letters 121 (1), 1-11, 2008
Fischer–Tropsch synthesis with promoted iron catalyst: Reaction pathways for acetic acid, glycol, 2-ethoxyethanol and 1, 2-diethoxyethane
A Sarkar, RA Keogh, S Bao, BH Davis
Applied Catalysis A: General 341 (1-2), 146-153, 2008
Precipitated iron Fischer-Tropsch catalyst: Effect of carbidization on the morphology of iron oxyhydroxide nanoneedles
A Sarkar, AK Dozier, UM Graham, G Thomas, RJ O’Brien, BH Davis
Applied Catalysis A: General 326 (1), 55-64, 2007
Active Sites of a NiSO4/γ-Al2O3 Catalyst for the Oligomerization of Isobutene
A Sarkar, D Seth, M Jiang, FTT Ng, GL Rempel
Topics in Catalysis 57 (6-9), 730-740, 2014
Kinetics of liquid‐phase hydrogenation of isooctenes on a Pd/γ‐alumina catalyst
A Sarkar, D Seth, FTT Ng, GL Rempel
AIChE journal 52 (3), 1142-1156, 2006
A thermally regenerable composite sorbent of crosslinked poly (acrylic acid) and ethoxylated polyethyleneimine for water desalination by sirotherm process
M Chanda, SA Pillay, A Sarkar, JM Modak
Journal of Applied Polymer Science 111 (6), 2741-2750, 2009
Selective oligomerization of isobutene on lewis acid catalyst: kinetic modeling
A Sarkar, D Seth, FTT Ng, GL Rempel
Industrial & Engineering Chemistry Research 53 (49), 18982-18992, 2014
Ethoxylated polyethylenimine gel‐coated on textile‐grade acrylic fiber. A thermally regenerable superfast sorbent for water desalination
M Chanda, A Sarkar, JM Modak
Journal of applied polymer science 93 (2), 883-893, 2004
Fischer-Tropsch Synthesis: Reaction Pathways for 14 C-Labeled Acetic Acid
A Sarkar, RA Keogh, S Bao, BH Davis
Catalysis letters 120 (1), 25-33, 2008
Fischer-Tropsch synthesis: characterization of interactions between reduction promoters and Co for Co/Al2O3–based GTL catalysts
G Jacobs, A Sarkar, Y Ji, PM Patterson, TK Das, M Luo, BH Davis
Proceedings of AIChE Annual Meeting, San Francisco, CA, USA, 12-17, 2006
Fischer Tropsch synthesis: A comparison of iron and cobalt catalysts
M Luo, S Bao, RA Keogh, A Sarkar, G Jacobs, BH Davis
Proceedings of the AIChE 2006 National Meeting, SanFrancisco, CA, USA, 12-17, 2006
A superfast polymeric sorbent with multiple functionalities of cationic, anionic, and chelating types. Effect of ph and common ions on copper (ii) sorption capacity of the sorbent
M Chanda, A Sarkar, ZW Chen
Journal of Polymer Materials 21 (1), 21-29, 2004
Interpenetrating networks of cross-Linked poly (acrylic acid) and cross-linked polyethyleneimine (80% ethoxylated) for desalination of brackish water by thermoreversible sorption
M Chanda, SA Pillay, A Sarkar, JM Modak
Industrial & Engineering Chemistry Research 49 (16), 7136-7146, 2010
A catalytic distillation process for one-step production of isooctane from isobutene-process development, modelling and analysis
A Sarkar
Chemical Engineering2005, University of Waterloo: Waterloo, 364, 2005
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