World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
40
Citations
4779
World Ranking
7466
National Ranking
382

Overview

Peter J. Ashman is affiliated with the University of Adelaide in Australia and specializes in engineering, with a focus on several key subfields including biomedical engineering, mechanical engineering, computational mechanics, geochemistry and petrology, and renewable energy, sustainability, and the environment.

Their research explores multiple main topics, notably thermochemical biomass conversion processes, coal and its by-products, iron and steelmaking processes, fire dynamics and safety research, energy and environment impacts, anaerobic digestion and biogas production, as well as chemical looping and thermochemical processes.

Peter J. Ashman has published in a variety of scientific venues. Frequent publication venues include:

  • Energy & Fuels
  • SSRN Electronic Journal
  • International Journal of Hydrogen Energy
  • Industrial & Engineering Chemistry Research
  • Solar Compass

The scientist has several recent papers illustrating the scope of their research interests. These include:

  • Underground hydrogen storage: Integrated surface facilities and fluid flow modelling for depleted gas reservoirs, 2023, International Journal of Hydrogen Energy
  • Pathways to the use of concentrated solar heat for high temperature industrial processes, 2023, Solar Compass
  • Effect of Calcium and Phosphorus on Interactions between Quartz Sand and K-Salt-Doped Wood under Both Steam Gasification and Combustion Atmospheres, 2020, Energy & Fuels
  • Interactions between Quartz Sand and Wood Doped with either K or Na Salts under Steam Gasification and Combustion Atmospheres, 2020, Industrial & Engineering Chemistry Research
  • Low-emission hydrogen production from gasification of Australian coals - Process simulation and technoeconomic assessment, 2024, International Journal of Hydrogen Energy

Their frequent co-authors include:

  • Graham J. Nathan
  • Woei Saw
  • Tahereh Hosseini
  • Nguyet Ky Ngo
  • Mehdi Jafarian

Best Publications

  • Disruption of microalgal cells for the extraction of lipids for biofuels: Processes and specific energy requirements

    Andrew K. Lee;David M. Lewis;Peter J. Ashman

  • Microbial flocculation, a potentially low-cost harvesting technique for marine microalgae for the production of biodiesel

    Andrew K. Lee;David M. Lewis;Peter J. Ashman

  • Graphene-based nitrogen-doped carbon sandwich nanosheets: a new capacitive process controlled anode material for high-performance sodium-ion batteries

    Dongdong Li;Dongdong Li;Lei Zhang;Lei Zhang;Hongbin Chen;Jun Wang

  • Harvesting, Thickening and Dewatering Microalgae Biomass

    Stephen L. Pahl;Andrew K. Lee;Theo Kalaitzidis;Peter J. Ashman

  • Effect of operating conditions on yield and quality of biocrude during hydrothermal liquefaction of halophytic microalga Tetraselmis sp.

    B.E. Eboibi;D.M. Lewis;P.J. Ashman;S. Chinnasamy

  • Harvesting of marine microalgae by electroflocculation: The energetics, plant design, and economics

    Andrew K. Lee;David M. Lewis;Peter J. Ashman

  • Solar thermal hybrids for combustion power plant: A growing opportunity

    Graham J. Nathan;Mehdi Jafarian;Bassam B. Dally;Woei L. Saw

  • The release of water-bound and organic sodium from Loy Yang coal during the combustion of single particles in a flat flame

    Philip J. van Eyk;Peter J. Ashman;Zeyad T. Alwahabi;Graham J. Nathan

  • Mechanism and kinetics of sodium release from brown coal char particles during combustion

    Philip J. van Eyk;Peter J. Ashman;Graham J. Nathan

  • Production of biochar from rice husk: Particulate emissions from the combustion of raw pyrolysis volatiles

    Lewis Dunnigan;Peter J. Ashman;Xiangping Zhang;Chi Wai Kwong

  • Hydrothermal liquefaction of microalgae for biocrude production: Improving the biocrude properties with vacuum distillation.

    Blessing Elo-Oghene Eboibi;David Milton Lewis;Peter John Ashman;Senthil Chinnasamy

  • On the burning of sawdust in a MILD combustion furnace

    Bassam. B. Dally;Sung Hoon Shim;Richard. A. Craig;Peter J. Ashman

  • Force and energy requirement for microalgal cell disruption: an atomic force microscope evaluation.

    Andrew K. Lee;David M. Lewis;Peter J. Ashman

  • Energy requirements and economic analysis of a full-scale microbial flocculation system for microalgal harvesting

    Andrew K. Lee;David M. Lewis;Peter J. Ashman

  • Quantitative measurement of atomic sodium in the plume of a single burning coal particle

    P.J. van Eyk;P.J. Ashman;Z.T. Alwahabi;G.J. Nathan

  • Economic evaluation of a novel fuel-saver hybrid combining a solar receiver with a combustor for a solar power tower

    G.J. Nathan;D.L. Battye;P.J. Ashman

  • A new method for determining the conversion of low-ash coals using synthetic ash as a tracer

    Timothy R. Ballantyne;Peter J. Ashman;Peter J. Mullinger

  • The effects of temperature and hydrodynamics on the crystallization fouling under cross flow conditions

    Basim O. Hasan;Graham J. Nathan;Peter J. Ashman;Richard A. Craig

  • Release of Cl, S, P, K, and Na during thermal conversion of algal biomass

    Daniel J. Lane;Philip J. van Eyk;Peter J. Ashman;Chi W. Kwong

  • Axial gas profiles in a bubbling fluidised bed biomass gasifier

    Davide Ross;Reji Noda;Masayuki Horio;Adam Kosminski

  • Polygeneration of Liquid Fuels and Electricity by the Atmospheric Pressure Hybrid Solar Gasification of Coal

    Ashok A. Kaniyal;Philip J. van Eyk;Graham J. Nathan;Peter J. Ashman

Frequent Co-Authors

Graham J. Nathan
Graham J. Nathan University of Adelaide
David Lewis
David Lewis University of Adelaide
Bassam B. Dally
Bassam B. Dally King Abdullah University of Science and Technology
Mikko Hupa
Mikko Hupa Åbo Akademi University
Rocky de Nys
Rocky de Nys James Cook University
Haihui Wang
Haihui Wang Tsinghua University
Xiangping Zhang
Xiangping Zhang Chinese Academy of Sciences
Andrew J. Cole
Andrew J. Cole Harvard University
Brian S. Haynes
Brian S. Haynes University of Sydney
Dan Boström
Dan Boström Umeå University

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