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Mohammad Mehdi Moftakhari Sharifzadeh
Mohammad Mehdi Moftakhari Sharifzadeh
Ph.D. Candidate in Chemical Engineering, Science and Research Branch Islamic Azad University, Tehran
Verified email at srbiau.ac.ir
Title
Cited by
Cited by
Year
Optimum design and exergy analysis of a novel cryogenic air separation process with LNG (liquefied natural gas) cold energy utilization
M Mehrpooya, MMM Sharifzadeh, MA Rosen
Energy 90, 2047-2069, 2015
1862015
Model development and energy and exergy analysis of the biomass gasification process (Based on the various biomass sources)
M Mehrpooya, M Khalili, MMM Sharifzadeh
Renewable and Sustainable Energy Reviews 91, 869-887, 2018
1242018
Energy and exergy analyses of a novel power cycle using the cold of LNG (liquefied natural gas) and low-temperature solar energy
M Mehrpooya, MMM Sharifzadeh, MA Rosen
Energy 95, 324-345, 2016
1192016
A novel integration of oxy-fuel cycle, high temperature solar cycle and LNG cold recovery–energy and exergy analysis
M Mehrpooya, MMM Sharifzadeh
Applied Thermal Engineering 114, 1090-1104, 2017
902017
Design of an integrated process for simultaneous chemical looping hydrogen production and electricity generation with CO2 capture
M Mehrpooya, MMM Sharifzadeh, M Rajabi, M Aghbashlo, M Tabatabai, ...
International Journal of Hydrogen Energy 42 (12), 8486-8496, 2017
802017
Modeling, energy and exergy analysis of solar chimney power plant-Tehran climate data case study
M Mehrpooya, M Shahsavan, MMM Sharifzadeh
Energy 115, 257-273, 2016
772016
Thermodynamic analysis of integrated LNG regasification process configurations
M Mehrpooya, MMM Sharifzadeh, MH Katooli
Progress in energy and combustion science 69, 1-27, 2018
632018
Process development and exergy cost sensitivity analysis of a hybrid molten carbonate fuel cell power plant and carbon dioxide capturing process
M Mehrpooya, H Ansarinasab, MMM Sharifzadeh, MA Rosen
Journal of Power Sources 364, 299-315, 2017
622017
Cost and economic potential analysis of a cascading power cycle with liquefied natural gas regasification
M Mehrpooya, MMM Sharifzadeh, MJ Zonouz, MA Rosen
Energy conversion and management 156, 68-83, 2018
472018
Conventional and advanced exergoeconomic assessments of a new air separation unit integrated with a carbon dioxide electrical power cycle and a liquefied natural gas …
M Mehrpooya, H Ansarinasab, MMM Sharifzadeh, MA Rosen
Energy conversion and management 163, 151-168, 2018
452018
Conceptual and basic design of a novel integrated cogeneration power plant energy system
M Mehrpooya, MMM Sharifzadeh
Energy 127, 516-533, 2017
452017
Investigation of a novel integrated process configuration for natural gas liquefaction and nitrogen removal by advanced exergoeconomic analysis
M Mehrpooya, MMM Sharifzadeh, H Ansarinasab
Applied Thermal Engineering 128, 1249-1262, 2018
422018
Introducing a hybrid photovoltaic-thermal collector, ejector refrigeration cycle and phase change material storage energy system (Energy, exergy and economic analysis)
B Ghorbani, M Mehrpooya, MMM Sharifzadeh
International Journal of Refrigeration 103, 61-76, 2019
402019
Evaluation of an optimal integrated design multi-fuel multi-product electrical power plant by energy and exergy analyses
M Mehrpooya, MMM Sharifzadeh, SA Mousavi
Energy 169, 61-78, 2019
402019
Time-dependent mathematical modeling of binary gas mixture in facilitated transport membranes (FTMs): A real condition for single-reaction mechanism
MMM Sharifzadeh, AE Amooghin, MZ Pedram, M Omidkhah
Journal of Industrial and Engineering Chemistry 39, 48-65, 2016
212016
Rigorous modeling of gas permeation behavior in facilitated transport membranes (FTMs); evaluation of carrier saturation effects and double‐reaction mechanism
A Ebadi Amooghin, MM Moftakhari Sharifzadeh, M Zamani Pedram
Greenhouse Gases: Science and Technology 8 (3), 429-443, 2018
202018
Gas permeation modeling through a multilayer hollow fiber composite membrane
A Ebadi Amooghin, S Mirrezaei, H Sanaeepur, ...
Journal of Membrane Science and Research 6 (1), 125-134, 2020
172020
A novel analytical method for prediction of gas permeation properties in ternary mixed matrix membranes: Considering an adsorption zone around the particles
AE Amooghin, M Lashani, MMM Sharifzadeh, H Sanaeepur
Separation and Purification Technology 225, 112-128, 2019
162019
A new permeation model in porous filler–based mixed matrix membranes for CO2 separation
MM Moftakhari Sharifzadeh, M Zamani Pedram, A Ebadi Amooghin
Greenhouse Gases: Science and Technology 9 (4), 719-742, 2019
82019
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Articles 1–19