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Toyin Omojola
Toyin Omojola
Hydrogenious LOHC Technologies
在 bath.edu 的电子邮件经过验证
标题
引用次数
引用次数
年份
Towards experimental handbooks in catalysis
A Trunschke, G Bellini, M Boniface, SJ Carey, J Dong, E Erdem, L Foppa, ...
Topics in Catalysis 63, 1683-1699, 2020
502020
Mechanistic insights into the desorption of methanol and dimethyl ether over ZSM-5 catalysts
T Omojola, N Cherkasov, AI McNab, DB Lukyanov, JA Anderson, ...
Catalysis Letters 148, 474-488, 2018
332018
Molecular behaviour of methanol and dimethyl ether in H-ZSM-5 catalysts as a function of Si/Al ratio: a quasielastic neutron scattering study
T Omojola, IP Silverwood, AJ O'Malley
Catalysis Science & Technology 10 (13), 4305-4320, 2020
262020
Transient kinetic studies and microkinetic modeling of primary olefin formation from dimethyl ether over ZSM‐5 catalysts
T Omojola, DB Lukyanov, AC van Veen
International Journal of Chemical Kinetics 51 (7), 528-537, 2019
242019
Zeolite minilith: A unique structured catalyst for the methanol to gasoline process
T Omojola, N Cherkasov, EV Rebrov, DB Lukyanov, SP Perera
Chemical Engineering and Processing-Process Intensification 131, 137-143, 2018
202018
Influence of precursors on the induction period and transition regime of dimethyl ether conversion to hydrocarbons over ZSM-5 catalysts
T Omojola, DB Lukyanov, N Cherkasov, VL Zholobenko, AC van Veen
Industrial & Engineering Chemistry Research 58 (36), 16479-16488, 2019
142019
Competitive adsorption of oxygenates and aromatics during the initial steps of the formation of primary olefins over ZSM-5 catalysts
T Omojola, AC van Veen
Catalysis Communications 140, 106010, 2020
132020
A quantitative multiscale perspective on primary olefin formation from methanol
T Omojola, AJ Logsdail, AC van Veen, SAF Nastase
Physical Chemistry Chemical Physics 23, 21437-21469, 2021
122021
Mechanistic insights into the conversion of dimethyl ether over ZSM-5 catalysts: A combined temperature-programmed surface reaction and microkinetic modelling study
T Omojola, AC van Veen
Chemical Engineering Science 239, 116620, 2021
122021
Site-specific scaling relations observed during methanol-to-olefin conversion over ZSM-5 catalysts
T Omojola
Chemical Engineering Science 251, 117424, 2022
102022
2D CFD simulations of flow and reaction during carbon dioxide methanation: A spatially resolved channel plate reactor study
T Omojola, L Davidson
Chemical Engineering Science 282, 119235, 2023
72023
The effect of Si/Al ratio on local and nanoscale water diffusion in H-ZSM-5: A quasielastic neutron scattering and molecular dynamics simulation study
AJ Porter, SL McHugh, T Omojola, IP Silverwood, AJ O'Malley
Microporous and Mesoporous Materials 348, 112391, 2023
62023
Experimental and kinetic modelling studies of methanol conversion to hydrocarbons over zeolite catalysts
T Omojola
PhD Thesis, University of Bath, 2019
52019
Mechanistic insights into the induction period of methanol-to-olefin conversion over ZSM-5 catalysts: A combined temperature-programmed surface reaction and microkinetic …
T Omojola
Industrial & Engineering Chemistry Research 62 (36), 14244–14265, 2023
22023
Site-specific activity maps observed during methanol-to-olefin conversion over ZSM-5 catalysts
T Omojola
Industrial & Engineering Chemistry Research 63 (21), 9425–9437, 2024
2024
Advanced kinetic characterization
T Omojola
ChemRXiv, 2022
2022
Multiscale models in heterogeneous catalysis: Incorporating dynamics into reaction kinetics
T Omojola
ChemRXiv, 2021
2021
Decoding complexity in structure-sensitive reactions
T Omojola
ChemRXiv, 2021
2021
A theoretical analysis of the burn-out times of an isothermal particle of coal char under air-firing, gasification and oxyfuel combustion in fluidised beds
T Omojola
ChemRXiv, 2021
2021
From starting molecules to steady-state: insights into the evolution of the hydrocarbon pool from methanol over ZSM-5 catalysts
T Omojola
6th UK Catalysis Conference, 2020
2020
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