World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
71
Citations
17676
World Ranking
970
National Ranking
60

Research.com Recognitions

  • 2018 - Fellow of the Combustion Institute for seminal advances in the knowledge of chemical and physical processes associated with pulverised coal combustion

Overview

Terry Wall is affiliated with the University of Newcastle Australia in Australia. Their research primarily spans the fields of Engineering and Earth and Planetary Sciences, with a particular focus on subfields such as Geochemistry and Petrology, Biomedical Engineering, Ocean Engineering, and Mechanical Engineering.

The scientist's main research topics involve Coal and Its By-products, Thermochemical Biomass Conversion Processes, Coal Properties and Utilization, and Coal Combustion and Slurry Processing.

Recent publications authored or co-authored by Terry Wall include:

  • Volatile release from maceral concentrates of pulverised coals used for pulverised coal injection at temperatures of 1550 °C and their relationship with density (2021), published in Fuel
  • Online monitoring of the burning characteristics of single pulverized coal particle in O2/N2 and O2/CO2 environments (2023), published in Thermal Science
  • Bias correcting regional scale Earth system model projections: novel approach using empirical mode decomposition (2025), published in Geoscientific Model Development

Frequent co-authors collaborating with Terry Wall include:

  • Liza Elliott
  • Gani Abdul
  • Behdad Moghtaderi
  • Arkaprabha Ganguli
  • Jeremy Feinstein

The venues where Terry Wall has published multiple works reflect the areas of their research interests and include:

  • Fuel
  • Thermal Science
  • Geoscientific Model Development

Terry Wall was awarded the title of Fellow of the Combustion Institute in 2018 for contributions to understanding the chemical and physical processes involved in pulverised coal combustion.

Best Publications

  • Oxy-fuel combustion technology for coal-fired power generation

    Bart J P Buhre;Liza K. Elliott;Changdong Sheng;Rajender P. Gupta

  • An overview on oxyfuel coal combustion—State of the art research and technology development

    Terry Wall;Yinghui Liu;Chris Spero;Liza Elliott

  • Combustion processes for carbon capture

    Terry F. Wall

  • Formation of the structure of chars during devolatilization of pulverized coal and its thermoproperties: A review

    Jianglong Yu;John A. Lucas;Terry F. Wall

  • Oxyfuel combustion for CO2 capture in power plants

    Rohan Stanger;Terry Wall;Reinhold Spörl;Manoj Paneru

  • Characterising ash of biomass and waste

    A.A. Tortosa Masiá;B.J.P. Buhre;R.P. Gupta;T.F. Wall

  • Differences in reactivity of pulverised coal in air (O2/N2) and oxy-fuel (O2/CO2) conditions

    Renu Kumar Rathnam;Liza K. Elliott;Terry F. Wall;Yinghui Liu

  • The effects of pressure on coal reactions during pulverised coal combustion and gasification

    Terry F. Wall;Gui-su Liu;Hong-wei Wu;Daniel G. Roberts;Daniel G. Roberts

  • A char morphology system with applications to coal combustion

    J.G. Bailey;A. Tate;C.F.K. Diessel;T.F. Wall

  • Sulphur impacts during pulverised coal combustion in oxy-fuel technology for carbon capture and storage

    Rohan Stanger;Terry Wall

  • Pyrolytic characteristics of blended coal and woody biomass

    Behdad Moghtaderi;Chatphol Meesri;Terry F Wall

  • An Empirical Method for the Prediction of Coal Ash Slag Viscosity

    G. J. Browning;G. W. Bryant;H. J. Hurst;J. A. Lucas

  • The porous structure of bituminous coal chars and its influence on combustion and gasification under chemically controlled conditions

    G. Liu;P. Benyon;K.E. Benfell;G.W. Bryant

  • Characteristics of Chars from Low-Temperature Pyrolysis of Lignite

    Fanrui Meng;Jianglong Yu;Jianglong Yu;Arash Tahmasebi;Yanna Han

  • Assessing slagging and fouling during biomass combustion: A thermodynamic approach allowing for alkali/ash reactions

    D. Nutalapati;R. Gupta;B. Moghtaderi;T.F. Wall

  • Factors influencing the ignition of flames from air-fired swirl pf burners retrofitted to oxy-fuel

    S.P. Khare;T.F. Wall;A.Z. Farida;Y. Liu

  • Thermal conductivity of coal ash and slags and models used

    H.R Rezaei;R.P Gupta;G.W Bryant;J.T Hart

  • Ash Formation Mechanisms during pf Combustion in Reducing Conditions

    A. R. Mclennan;G. W. Bryant;B. R. Stanmore;T. F. Wall

  • Fine ash formation during combustion of pulverised coal–coal property impacts

    B.J.P. Buhre;J.T. Hinkley;R.P. Gupta;P.F. Nelson

  • Impact of Mineral Impurities in Solid Fuel Combustion

    R. P. Gupta;T. F. Wall;L. Baxter

Frequent Co-Authors

Rajender Gupta
Rajender Gupta University of Alberta
Jianglong Yu
Jianglong Yu Monash University
Behdad Moghtaderi
Behdad Moghtaderi University of Newcastle Australia
Sushil Gupta
Sushil Gupta Florida International University
Dongke Zhang
Dongke Zhang University of Western Australia
Kalpit Shah
Kalpit Shah RMIT University
Arash Tahmasebi
Arash Tahmasebi University of Newcastle Australia
Hongwei Wu
Hongwei Wu Curtin University
Sankar Bhattacharya
Sankar Bhattacharya Monash University
Larry L. Baxter
Larry L. Baxter Brigham Young University

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