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Engineering and Technology

D-Index
32
Citations
3461
World Ranking
9608
National Ranking
53

Overview

Thomas A. Adams is affiliated with the Norwegian University of Science and Technology in Norway. Their primary research area is engineering, with a focus on mechanical engineering, biomedical engineering, materials chemistry, electrical and electronic engineering, and control and systems engineering.

The scientist has contributed to several topics within engineering and technology, including:

  • Carbon Dioxide Capture Technologies
  • Advancements in Solid Oxide Fuel Cells
  • Thermochemical Biomass Conversion Processes
  • Fuel Cells and Related Materials
  • Environmental Impact and Sustainability
  • Chemical Looping and Thermochemical Processes
  • Catalysts for Methane Reforming

Thomas A. Adams has published frequently in venues such as:

  • The Canadian Journal of Chemical Engineering
  • Industrial & Engineering Chemistry Research
  • Energy
  • Computers & Chemical Engineering
  • Systems and Control Transactions

Frequent co-authors include:

  • Truls Gundersen
  • James S. Cotton
  • Haoxiang Lai
  • Avinash Shankar Rammohan Subramanian
  • Ikenna J. Okeke

Recent papers by Adams showcase research on energy systems, hydrogen production, and immunological coordination. Selected publications include:

  • Design and eco-technoeconomic analyses of SOFC/GT hybrid systems accounting for long-term degradation effects, 2020, International Journal of Hydrogen Energy
  • An eco-technoeconomic analysis of hydrogen production using solid oxide electrolysis cells that accounts for long-term degradation, 2022, Frontiers in Energy Research
  • cDC1 coordinate innate and adaptive responses in the omentum required for T cell priming and memory, 2022, Science Immunology
  • Technoeconomic analysis of a waste tire to liquefied synthetic natural gas (SNG) energy system, 2020, Energy
  • Comparison of steel manufacturing off-gas utilization methods via life cycle analysis, 2020, Journal of Cleaner Production

Best Publications

  • Energy Conversion with Solid Oxide Fuel Cell Systems: A Review of Concepts and Outlooks for the Short- and Long-Term

    Thomas A. Adams;Jake Nease;David Tucker;Paul I. Barton

  • Combining coal gasification and natural gas reforming for efficient polygeneration

    Thomas A. Adams;Paul I. Barton

  • Modeling and Simulation of Energy Systems: A Review

    Avinash Shankar Rammohan Subramanian;Truls Gundersen;Thomas Alan Adams

  • A dynamic two-dimensional heterogeneous model for water gas shift reactors

    Thomas A. Adams;Paul I. Barton

  • Optimal Design and Operation of Flexible Energy Polygeneration Systems

    Yang Chen;Thomas A. Adams;Paul I. Barton

  • High‐efficiency power production from coal with carbon capture

    Thomas A. Adams;Paul I. Barton

  • Techno-economic analysis of coke oven gas and blast furnace gas to methanol process with carbon dioxide capture and utilization

    Lingyan Deng Deng;Thomas Adams

  • Off-design point modelling of a 420 MW CCGT power plant integrated with an amine-based post-combustion CO2 capture and compression process

    T. Adams;N. Mac Dowell

  • A multi-scale dynamic two-dimensional heterogeneous model for catalytic steam methane reforming reactors

    Jaffer H. Ghouse;Thomas A. Adams

  • Optimal Design and Operation of Static Energy Polygeneration Systems

    Yang Chen;Thomas A. Adams;Paul I. Barton

  • High-efficiency power production from natural gas with carbon capture

    Thomas A. Adams;Paul I. Barton

  • Comparison of CO2 Capture Approaches for Fossil-Based Power Generation: Review and Meta-Study

    Thomas A. Adams Ii;Leila Hoseinzade;Pranav Bhaswanth Madabhushi;Ikenna J. Okeke

  • A novel polygeneration process to co-produce ethylene and electricity from shale gas with zero CO2 emissions via methane oxidative coupling

    Yaser Khojasteh Salkuyeh;Thomas A. Adams

  • Combining coal gasification, natural gas reforming, and external carbonless heat for efficient production of gasoline and diesel with CO2 capture and sequestration

    Yaser Khojasteh Salkuyeh;Thomas A. Adams

  • Combining coal gasification, natural gas reforming, and solid oxide fuel cells for efficient polygeneration with CO2 capture and sequestration

    Thomas A. Adams;Paul I. Barton

  • Polygeneration of fuels and chemicals

    Thomas A Adams;Jaffer H Ghouse

  • Techno-economic comparison of Acetone-Butanol-Ethanol fermentation using various extractants

    Giancarlo Dalle Ave;Thomas A Adams

  • A new power, methanol, and DME polygeneration process using integrated chemical looping systems

    Yaser Khojasteh Salkuyeh;Thomas A. Adams

  • Technical challenges in operating an SOFC in fuel flexible gas turbine hybrid systems: Coupling effects of cathode air mass flow

    Nor Farida Harun;David Tucker;Thomas A. Adams

  • Effect of moderate static electric field on the growth and metabolism of Chlorella vulgaris.

    Hassan Nezammahalleh;Faezeh Ghanati;Thomas A. Adams;Mohsen Nosrati

  • Design and Economic Analysis of a Thermochemical Lignocellulosic Biomass-to-Butanol Process

    Chinedu Okoli;Thomas A. Adams

Frequent Co-Authors

Warren D. Seider
Warren D. Seider University of Pennsylvania
Truls Gundersen
Truls Gundersen Norwegian University of Science and Technology
Faezeh Ghanati
Faezeh Ghanati Tarbiat Modares University
Mariano Martín
Mariano Martín University of Salamanca
Seyed Abbas Shojaosadati
Seyed Abbas Shojaosadati Tarbiat Modares University
Prodromos Daoutidis
Prodromos Daoutidis University of Minnesota
Lorenz T. Biegler
Lorenz T. Biegler Carnegie Mellon University
Prashant Mhaskar
Prashant Mhaskar McMaster University
Kenneth M. Murphy
Kenneth M. Murphy Washington University in St. Louis

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