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Mohamed Pourkashanian

Mohamed Pourkashanian

D-Index & Metrics

Engineering and Technology

D-Index
80
Citations
21340
World Ranking
541
National Ranking
36

Overview

Mohamed Pourkashanian is affiliated with the University of Sheffield in the United Kingdom. Their academic focus lies primarily within Engineering, with substantial contributions to Mechanical Engineering, Computational Mechanics, Biomedical Engineering, Renewable Energy, Sustainability and the Environment, and Electrical and Electronic Engineering.

Their research covers a range of scientific topics including:

  • Fuel Cells and Related Materials
  • Carbon Dioxide Capture Technologies
  • Electrocatalysts for Energy Conversion
  • Combustion and Flame Dynamics
  • Thermochemical Biomass Conversion Processes
  • Hybrid Renewable Energy Systems
  • Advanced Combustion Engine Technologies

Mohamed Pourkashanian has published extensively, with notable papers such as:

  • "Sorption direct air capture with CO2 utilization," 2023, published in Progress in Energy and Combustion Science
  • "Biomethane production using an integrated anaerobic digestion, gasification and CO2 biomethanation process in a real waste water treatment plant: A techno-economic assessment," 2020, published in Energy Conversion and Management
  • "Alternative architectures and materials for PEMFC gas diffusion layers: A review and outlook," 2022, published in Renewable and Sustainable Energy Reviews
  • "Sustainable aviation fuel (SAF) production through power-to-liquid (PtL): A combined techno-economic and life cycle assessment," 2023, published in Energy Conversion and Management
  • "Bioenergy with carbon capture and storage (BECCS) potential in jet fuel production from forestry residues: A combined Techno-Economic and Life Cycle Assessment approach," 2022, published in Energy Conversion and Management

Frequent collaborators include:

  • D.B. Ingham
  • Kevin J. Hughes
  • Lin Ma
  • Stavros Michailos
  • M.S. Ismail

The venues where Mohamed Pourkashanian publishes most frequently comprise:

  • SSRN Electronic Journal
  • Fuel
  • Energy Conversion and Management
  • International Journal of Hydrogen Energy
  • Energy

Best Publications

  • Carbon capture and storage update

    Matthew E. Boot-Handford;Juan C. Abanades;Edward J. Anthony;Martin J. Blunt

  • Pollutants from the combustion of solid biomass fuels

    A. Williams;J.M. Jones;L. Ma;M. Pourkashanian

  • Numerical investigations on dynamic stall of low Reynolds number flow around oscillating airfoils

    Shengyi Wang;Shengyi Wang;Derek B. Ingham;Lin Ma;Mohamed Pourkashanian

  • Combustion of pulverised coal and biomass

    A. Williams;M. Pourkashanian;J.M. Jones

  • The range and level of impurities in CO2 streams from different carbon capture sources

    Richard T.J. Porter;Michael Fairweather;Mohamed Pourkashanian;Robert M. Woolley

  • Sorption direct air capture with CO2 utilization

    Unknown

  • Combustion of a Single Particle of Biomass

    Yao B. Yang;Vida N. Sharifi;Jim Swithenbank;Lin Ma

  • Modelling coal combustion: the current position

    A. Williams;R. Backreedy;R. Habib;J.M. Jones

  • An investigation of the thermal and catalytic behaviour of potassium in biomass combustion

    J.M. Jones;L.I. Darvell;T.G. Bridgeman;M. Pourkashanian

  • Genetic algorithms for optimisation of chemical kinetics reaction mechanisms

    L. Elliott;D.B. Ingham;A.G. Kyne;N.S. Mera

  • Turbulence modeling of deep dynamic stall at relatively low Reynolds number

    Shengyi Wang;Shengyi Wang;Derek B. Ingham;Lin Ma;Mohamed Pourkashanian

  • Combustion modelling opportunities and challenges for oxy-coal carbon capture technology

    P. Edge;M. Gharebaghi;R. Irons;R. Porter

  • Co-firing pulverised coal and biomass: a modeling approach

    R.I. Backreedy;L.M. Fletcher;J.M. Jones;L. Ma

  • Measurement and prediction of the emission of pollutants from the combustion of coal and biomass in a fixed bed furnace

    Andy B. Ross;Jenny M. Jones;Suparin Chaiklangmuang;Mohamed Pourkashanian

  • Modelling the combustion of pulverized biomass in an industrial combustion test furnace

    L. Ma;J.M. Jones;M. Pourkashanian;A. Williams

  • Prediction of ash deposition on superheater tubes from pulverized coal combustion

    L.Y. Huang;J.S. Norman;M. Pourkashanian;A. Williams

  • MODELLING PULVERISED COAL COMBUSTION USING A DETAILED COAL COMBUSTION MODEL

    R. I. Backreedy;L. M. Fletcher;L. Ma;M. Pourkashanian

  • Numerical investigation on the shock wave transition in a three-dimensional scramjet isolator

    Wei Huang;Wei Huang;Zhen-guo Wang;Mohamed Pourkashanian;Lin Ma

  • Evaluation of solution methods for radiative heat transfer in gaseous oxy-fuel combustion environments

    R. Porter;F. Liu;M. Pourkashanian;A. Williams

  • Alternative architectures and materials for PEMFC gas diffusion layers: A review and outlook

    Unknown

  • LES modelling of air and oxy-fuel pulverised coal combustion—impact on flame properties

    P. Edge;S.R. Gubba;L. Ma;R. Porter

  • The combustion of coal and biomass in a fixed bed furnace

    J. M. Jones;M. Pourkashanian;A. Ross;Lefteris Danos

Frequent Co-Authors

Derek B. Ingham
Derek B. Ingham University of Sheffield
Lin Ma
Lin Ma University of Sheffield
Alan Williams
Alan Williams University of Leeds
Jenny M. Jones
Jenny M. Jones University of Leeds
Gordon E. Andrews
Gordon E. Andrews University of Leeds
Zhenguo Wang
Zhenguo Wang National University of Defense Technology
Wei Huang
Wei Huang National University of Defense Technology
Andrew Ross
Andrew Ross University of Leeds
Houzhang Tan
Houzhang Tan Xi'an Jiaotong University
Keith D. Bartle
Keith D. Bartle University of Leeds

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