World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
37
Citations
5290
World Ranking
8413
National Ranking
544

Overview

Miroslaw L. Wyszynski is affiliated with the University of Birmingham in the United Kingdom. Their research primarily spans the fields of Engineering and Chemical Engineering, with a strong focus on Fluid Flow and Transfer Processes, Materials Chemistry, Biomedical Engineering, Computational Mechanics, and Catalysis.

The scientist's work covers several topics related to energy and materials science. These include:

  • Advanced Combustion Engine Technologies
  • Catalytic Processes in Materials Science
  • Biodiesel Production and Applications
  • Catalysts for Methane Reforming
  • Electrocatalysts for Energy Conversion
  • Fluid Dynamics and Heat Transfer
  • Combustion and flame dynamics

Several recent papers provide insight into the scope and focus of their research contributions:

  • "Maximizing paraffin to olefin ratio employing simulated nitrogen-rich syngas via Fischer-Tropsch process over Co3O4/SiO2 catalysts," 2020, published in Fuel Processing Technology
  • "The significance of low carbon bio-alcohols and bio-ketones fuels for clean propulsion systems," 2023, published in Fuel
  • "Liquid Propane Injection in Flash-Boiling Conditions," 2021, published in Energies
  • "Tribological Performance of Biomass-Derived Bio-Alcohol and Bio-Ketone Fuels," 2021, published in Energies

Their frequent coauthors include Omid Doustdar, A. Tsolakis, Soheil Zeraati-Rezaei, J.M. Herreros, and Hamid Mahmoudi. This collaboration network reflects interdisciplinary efforts in topics intersecting chemical engineering and fuel technologies.

Publication venues where the scientist is most frequently published include:

  • Energies
  • Fuel Processing Technology
  • Fuel

Best Publications

  • Engine performance and emissions of a diesel engine operating on diesel-RME (rapeseed methyl ester) blends with EGR (exhaust gas recirculation)

    A. Tsolakis;A. Megaritis;M.L. Wyszynski;K. Theinnoi

  • Combustion and Emissions of 2,5-Dimethylfuran in a Direct-Injection Spark-Ignition Engine

    Shaohua Zhong;Ritchie Daniel;Hongming Xu;Jun Zhang

  • On-board generation of hydrogen-rich gaseous fuels—a review

    Y. Jamal;M.L. Wyszynski

  • Effect of spark timing and load on a DISI engine fuelled with 2,5-dimethylfuran

    Ritchie Daniel;Guohong Tian;Guohong Tian;Hongming Xu;Miroslaw L. Wyszynski

  • Biogas upgrade to syn-gas (H2–CO) via dry and oxidative reforming

    C.S. Lau;A. Tsolakis;M.L. Wyszynski

  • HYDROGEN ENRICHMENT: A WAY TO MAINTAIN COMBUSTION STABILITY IN A NATURAL GAS FUELLED ENGINE WITH EXHAUST GAS RECIRCULATION, THE POTENTIAL OF FUEL REFORMING

    S. Allenby;W-C. Chang;A. Megaritis;M. L. Wyszyński

  • Natural gas HCCI engine operation with exhaust gas fuel reforming

    D. Yap;S.M. Peucheret;A. Megaritis;M.L. Wyszynski

  • Application of Exhaust Gas Fuel Reforming in Compression Ignition Engines Fueled by Diesel and Biodiesel Fuel Mixtures

    A. Tsolakis;and A. Megaritis;M. L. Wyszynski

  • Effect of Gas-to-Liquid Diesel Fuels on Combustion Characteristics, Engine Emissions, and Exhaust Gas Fuel Reforming. Comparative Study

    Ahmad Abu-Jrai;Athanasios Tsolakis;Kampanart Theinnoi;R Cracknell

  • Low temperature exhaust gas fuel reforming of diesel fuel

    A Tsolakis;A Megaritis;M.L Wyszynski

  • Investigation of EGR Effect on Combustion and PM Emissions in a DISI Engine

    Thomas Lattimore;Chongming Wang;Hongming Xu;Hongming Xu;Miroslaw L. Wyszynski

  • Characteristics of LPG-diesel dual fuelled engine operated with rapeseed methyl ester and gas-to-liquid diesel fuels

    H. S. Tira;Jose Martin Herreros;A. Tsolakis;M. L. Wyszynski

  • Exhaust gas reforming of gasoline at moderate temperatures

    Y. Jamal;T. Wagner;M.L. Wyszynski

  • Aldehydes and Ketones in Engine Exhaust Emissions—a Review:

    T Wagner;M L Wyszyński

  • Effect of Hydrogen Addition on Natural Gas HCCI Combustion

    D. Yap;A. Megaritis;S. Peucheret;M.L. Wyszynski

  • Experimental study on microscopic and macroscopic characteristics of diesel spray with split injection

    Ziman Wang;Hongming Xu;Changzhao Jiang;Miroslaw L. Wyszynski

  • Effect of water blending on bioethanol HCCI combustion with forced induction and residual gas trapping

    A. Megaritis;D. Yap;M.L. Wyszynski

  • A modelling study into the effects of variable valve timing on the gas exchange process and performance of a 4-valve DI homogeneous charge compression ignition (HCCI) engine

    Afm Mahrous;A Potrzebowski;Miroslaw Wyszynski;Hongming Xu

  • An investigation into propane homogeneous charge compression ignition (HCCI) engine operation with residual gas trapping

    D. Yap;J. Karlovsky;A. Megaritis;M.L. Wyszynski

  • Applying boosting to gasoline HCCI operation with residual gas trapping

    D. Yap;M.L. Wyszynski;A. Megaritis;Hongming Xu

Frequent Co-Authors

Hongming Xu
Hongming Xu University of Birmingham
Athanasios Tsolakis
Athanasios Tsolakis University of Birmingham
Rizalman Mamat
Rizalman Mamat Universiti Malaysia Pahang
Guohong Tian
Guohong Tian University of Surrey
Jose Martin Herreros
Jose Martin Herreros University of Birmingham
Roger Cracknell
Roger Cracknell Shell (Netherlands)
Alvin W. Nienow
Alvin W. Nienow University of Birmingham
Shijin Shuai
Shijin Shuai Tsinghua University
Andrzej W. Pacek
Andrzej W. Pacek University of Birmingham
Xiao Ma
Xiao Ma New York University

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