Search Results - "Samimi, Fereshteh"
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Development of an Efficient Methanol Production Process for Direct CO2 Hydrogenation over a Cu/ZnO/Al2O3 Catalyst
Published in Catalysts (01-11-2017)“…Carbon capture and utilization as a raw material for methanol production are options for addressing energy problems and global warming. However, the commercial…”
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2
Impact of pertinent parameters on foam behavior in the entrance region of porous media: mathematical modeling
Published in Petroleum science (01-12-2020)“…Foam injection is a promising solution for control of mobility in oil and gas field exploration and development, including enhanced oil recovery,…”
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Energy and exergy analysis and optimization of biomass gasification process for hydrogen production (based on air, steam and air/steam gasifying agents)
Published in International journal of hydrogen energy (27-11-2020)“…Growing the consumption of fossil fuels and emerging global warming issue have driven the research interests toward renewable and environmentally friendly…”
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Thermal management analysis of a Li-ion battery cell using phase change material loaded with carbon fibers
Published in Energy (Oxford) (01-02-2016)“…High latent heat of PCMs (phase change materials) has made them as one of the most important materials for thermal management purposes. However, PCMs’ low…”
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Green Methanol Production Process from Indirect CO2 Conversion: RWGS Reactor versus RWGS Membrane Reactor
Published in Journal of environmental chemical engineering (01-02-2019)“…[Display omitted] Herein, two different scenarios for indirect CO2 conversion process to produce methanol via reverse water gas shift (RWGS) reaction were…”
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Kinetic Modeling of Biomass Gasification in the Reduction Zone Using Various Gasification Agents
Published in Chemical engineering & technology (01-04-2022)“…The depletion of fossil fuels and global warming have incentivized research into alternative and ecologically benign fuels. Among the most promising options…”
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Green methanol synthesis process from carbon dioxide via reverse water gas shift reaction in a membrane reactor
Published in Chemical engineering research & design (01-12-2018)“…[Display omitted] •Carbon dioxide hydrogenation to methanol process was modeled and optimized.•A water perm-selective membrane for H2O removal was applied in…”
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Alternative Strategies for Effective Utilization of Carbon Dioxide in Dimethyl Ether Synthesis
Published in Chemical engineering & technology (01-05-2023)“…Converting CO2 into chemicals, e.g., methanol and dimethyl ether (DME), has been an attractive way to protect the global environment. In this process, the…”
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Diazinon removal from aqueous media by mesoporous MIL-101(Cr) in a continuous fixed-bed system
Published in Journal of environmental chemical engineering (01-08-2018)“…•In this study, aqueous diazinon removal by mesoporous MIL-101(Cr) in a continuous fixed-bed system is examined.•The characterization techniques (i.e. SEM,…”
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Phase stability analysis on green methanol synthesis process from CO2 hydrogenation in water cooled, gas cooled and double cooled tubular reactors
Published in Fuel processing technology (01-12-2018)“…Tackling environmental crisis and fossil fuel depletion is one of the major concerns in today's world. Among all the techniques of CO2 mitigations, its…”
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Phase stability analysis on green methanol synthesis process from CO^sub 2^ hydrogenation in water cooled, gas cooled and double cooled tubular reactors
Published in Fuel processing technology (01-12-2018)“…Tackling environmental crisis and fossil fuel depletion is one of the major concerns in today's world. Among all the techniques of CO2 mitigations, its…”
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The optimal operating conditions of a thermally double coupled, dual membrane reactor for simultaneous methanol synthesis, methanol dehydration and methyl cyclohexane dehydrogenation
Published in Journal of natural gas science and engineering (01-07-2014)“…In this study, the concept of thermally double coupled reactor is proposed as an alternative configuration to mix the energy efficient concept of coupling two…”
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