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Mohammad Heidari
Mohammad Heidari
Faculty of Chemical & Petroleum Engineering, University of Tabriz, Iran
Verified email at ms.tabrizu.ac.ir - Homepage
Title
Cited by
Cited by
Year
CO2 capture activity of a novel CaO adsorbent stabilized with (ZrO2+ Al2O3+ CeO2)-based additive under mild and realistic calcium looping conditions
M Heidari, M Tahmasebpoor, SB Mousavi, C Pevida
Journal of CO2 Utilization 53, 101747, 2021
882021
Investigation of H2O2/UV advanced oxidation process on the removal rate of coliforms from the industrial effluent: A pilot-scale study
M Ashrafivala, SB Mousavi, SZ Heris, M Heidari, M Mohammadpourfard, ...
International Journal of Hydrogen Energy 47 (78), 33530-33540, 2022
582022
CO2 capture and fluidity performance of CaO-based sorbents: Effect of Zr, Al and Ce additives in tri-, bi-and mono-metallic configurations
M Heidari, M Tahmasebpoor, A Antzaras, AA Lemonidou
Process Safety and Environmental Protection 144, 349-365, 2020
562020
Highly robust ZrO2-stabilized CaO nanoadsorbent prepared via a facile one-pot MWCNT-template method for CO2 capture under realistic calcium looping conditions
SB Mousavi, M Heidari, F Rahmani, RA Sene, PT Clough, S Ozmen
Journal of cleaner production 384, 135579, 2023
512023
The novel Carbon Nanotube-assisted development of highly porous CaZrO3-CaO xerogel with boosted sorption activity towards high-temperature cyclic CO2 capture
M Heidari, SB Mousavi, F Rahmani, PT Clough, S Ozmen
Energy Conversion and Management 274, 116461, 2022
462022
Theoretical and experimental study on the fluidity performance of hard-to-fluidize carbon nanotubes-based CO2 capture sorbents
MJ Nobarzad, M Tahmasebpoor, M Heidari, C Pevida
Frontiers of Chemical Science and Engineering 16 (10), 1460-1475, 2022
322022
Development of novel waste tea-derived activated carbon promoted with SiO2 nanoparticles as highly robust and easily fluidizable sorbent for low-temperature CO2 capture
M Tahmasebpoor, M Iranvandi, M Heidari, B Azimi, C Pevida
Journal of Environmental Chemical Engineering 11 (5), 110437, 2023
272023
The novel SiO2-decorated highly robust waste-derived activated carbon with homogeneous fluidity for the CO2 capture process
M Iranvandi, M Tahmasebpoor, B Azimi, M Heidari, C Pevida
Separation and Purification Technology 306, 122625, 2023
272023
Waste oleaster seed-derived activated carbon mixed with coarse particles of fluid catalytic cracking as a highly-efficient CO2 adsorbent at low temperatures
MJ Athari, M Tahmasebpoor, B Azimi, M Heidari, C Pevida
Process Safety and Environmental Protection 178, 580-594, 2023
132023
Investigation of the Release Rate of Biocide and Corrosion Resistance of Vinyl-, Acrylic-, and Epoxy-Based Antifouling Paints on Steel in Marine Infrastructures
A Jalaie, A Afshaar, SB Mousavi, M Heidari
Polymers 15 (19), 3948, 2023
132023
Insightful textural/morphological evaluation of cost-effective and highly sustainable Ca-Zr-O nanosorbent modified with the waste date kernel as a biomass pore-former for high …
M Heidari, SB Mousavi, F Rahmani, TM Aminabhavi, M Rezakazemi
Sustainable Materials and Technologies 38, e00778, 2023
112023
Eco-friendly, sustainable and porous eggshell/tea waste-derived CaO nanoparticles as a high-temperature CO2 sorbent: Fabrication and textural/morphological evaluation
M Heidari, SB Mousavi, F Rahmani, RA Sene
Journal of Industrial and Engineering Chemistry, 2023
72023
The MWCNT-assisted development of highly porous Zr-decorated CaO xerogel with boosted sorption activity towards high-temperature cyclic CO2 capture
M Heidari, SB Mousavi, F Rahmani, PT Clough, S Ozmen
Available at SSRN 4119156, 0
6
Improvement of fluidization behavior of multi-walled carbon nanotubes by physically mixing with hydrophobic silica nanoparticles
M J Nobarzad, M Tahmasebpoor, M Heidari
8th international Congress on Nano Science & Technology: Basic and …, 2018
2018
A novel (Al–Zr–Ce) incorporated CaO nanoparticles as a durable sorbent for CO2 capture: Fluidizability study
M Heidari, M Tahmasebpoor, M Javidi Nobarzad
8th international Congress on Nano Science & Technology: Basic and …, 2018
2018
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