S. No.
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Authors
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Title
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Name of the Journal
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Vol.
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Page
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Year
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01
|
|
|
|
|
|
|
02
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S C Nayak, S Sengupta, G Deo
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Effect of Contact Time on Carbon Deposition and Catalytic Activity of Nickel Alumina Catalysts for Dry Reforming of Methane
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Chemistry Select
|
9(27)
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e202304841
|
2024
|
03
|
V.V.S.S.D. Manikanta,
S Sengupta.
|
Ni-based Catalyst Development for the Catalytic Conversion of CO2 to Substitute Natural Gas—Effect of Preparation Method
|
Catalysis Letters
|
-
|
-
|
2024
|
04
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Pavan K. Gupta, Vineet Kumar, Sudip Maity, Goutam Kishore Gupta, Sudipta Datta, Arvind Singh, Siddhartha Sengupta
|
Comparative Studies of Co/SBA-15 Catalysts Synthesized with Different Silica Sources Including Coal Fly Ash for Fischer-Tropsch Synthesis
|
Chemistry Select
|
8 (11)
|
e202204962
|
2023
|
05
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R Kumari, S Sengupta
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MgAl2O4 with CaO in supported Ni and Ni-Co catalysts - impact on CO2 reforming of CH4
|
Indian Chemical Engineer
|
65(6)
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574-586
|
2023
|
06
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M D Shakir, M Prasad K Ray, S Sengupta, A Sinhamahapatra, S Liu, H Vuthaluru,
|
NaBH4‑Assisted Synthesis of B−(Ni−Co)/MgAl2O4 Nanostructures for the Catalytic Dry Reforming of Methane
|
ACS Applied Nano Materials
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5
|
10951−10961
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2022
|
07
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M D Shakir, M Prasad K Ray, S Sengupta, A Sinhamahapatra, S Liu, H Vuthaluru,
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B-Ni/MgAl2O4 catalyzed dry reforming of methane: The role of boron to resist the formation of graphitic carbon
|
Fuel
|
320
|
123950
|
2022
|
08
|
M Prasad, K Ray, A Sinhamahapatra, S Sengupta; 57 (2022)
|
Ni/CexZr1-xO2 catalyst prepared via one-step co-precipitation for CO2 reforming of CH4 to produce syngas: Role of oxygen storage capacity (OSC) and oxygen vacancy formation energy (OVFE)
|
Journal of Materials Science
|
57
|
2839–2856
|
2022
|
09
|
S Biswas, H-Y Lee, M Prasad,
A Sharma, J-S Yu, S Sengupta, D D Pathak, and A Sinhamahapatra
|
Black TiO2- x Nanoparticles Decorated with Ni Nanoparticles and Trace Amounts of Pt Nanoparticles for Photocatalytic Hydrogen Generation,
|
ACS Applied Nano Materials
|
4
|
4441-4451
|
2021
|
10
|
R Kumari, S Sengupta
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Catalytic CO2 reforming of CH4 over MgAl2O4 supported Ni-Co catalysts for the syngas production,
|
International Journal of Hydrogen Energy
|
45
|
22775-22787
|
2020
|
11
|
K Ray, S Sengupta, G Deo
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Reforming and cracking of CH4 over Al2O3 supported Ni, Ni-Fe and Ni-Co catalysts;
|
Fuel Processing Technology
|
156
|
195-203.
|
2017
|
12
|
S Sengupta and G Deo
|
Modifying alumina with CaO or MgO in supported Ni and Ni-Co catalysts and its effect on dry reforming of CH4
|
Journal of CO2 Utilization
|
10
|
67-77.
|
2015
|
13
|
G P Singh, A P Moon, S Sengupta, G Deo, S Sangal and K Mondal
|
Corrosion Behavior of IF Steel in Various Media and Its Comparison with Mild Steel;
|
Journal of Materials Engineering and Performance
|
24
|
1961-1974.
|
2015
|
14
|
S Sengupta, K Ray and G Deo
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The effects of modifying the Ni/Al2O3 catalyst with cobalt on the catalytic reforming of CH4 with CO2 and cracking of CH4 reactions;
|
International Journal of Hydrogen Energy
|
39
|
11462-11472
|
2014
|
15
|
Taraknath Das, S Sengupta and G Deo
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Effect of calcination temperature during the synthesis of Co/Al2O3 catalyst used for the hydrogenation of CO2
|
Reaction Kinetics, Mechanisms and Catalysis
|
110
|
147-162.
|
2013
|
16
|
A Choudhary, S Sengupta, C Bhattacharjee and S Datta
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Effects of co-solutes on Cr (VI) removal by micellar enhanced ultrafiltration (MEUF) process;
|
Desalination and Water Treatment
|
44
|
67-74.
|
2012
|
17
|
S Mondai,, S Dasgupta., S Sengupta, C Bhattacharjee, S Mondai,
|
A study based on the different dozing levels pf primary tanery wastewater treatement
|
Indian Journal of Environmental Protection
|
30(1)
|
40–45
|
2010
|
18
|
A Choudhary, S Sengupta, C Bhattacharjee and S Datta,
|
Extraction of Hexavalent Chromium from Aqueous Stream by Emulsion Liquid Membrane (ELM);
|
Separation Science and Technology
|
45
|
178-185.
|
2010
|