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Chemistry

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47
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Engineering and Technology

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50
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Overview

Eric Croiset is affiliated with the University of Waterloo in Canada and has contributed extensively to the fields of Engineering and Materials Science. Their body of work covers various specialized subfields such as Materials Chemistry, Biomedical Engineering, Catalysis, Mechanical Engineering, and Renewable Energy, Sustainability and the Environment.

The research topics prominently associated with Eric Croiset's work include:

  • Advancements in Solid Oxide Fuel Cells
  • Chemical Looping and Thermochemical Processes
  • Carbon Dioxide Capture Technologies
  • Catalysts for Methane Reforming
  • CO2 Reduction Techniques and Catalysts
  • Catalytic Processes in Materials Science
  • Advanced Combustion Engine Technologies

Frequent collaborators in their research efforts include Monica Ho, Aline Braz Ramirez, Negar Akbarnia, Elisabeth Prince, and Gerald G. Fuller.

Eric Croiset has published several papers in a variety of scientific journals, with notable recent publications including:

  • "Direct Ink Writing of Conductive Hydrogels", 2025, Advanced Functional Materials
  • "New mechanistic insights into CO2 reduction in solid oxide electrolysis cell through a multi-scale modelling approach", 2021, Journal of Power Sources
  • "A theoretical study on CO2 electrolysis through synergistic manipulation of Ni/Mn doping and oxygen vacancies in La(Sr)FeO3", 2020, Journal of Catalysis
  • "Techno-Economic Analysis of Pressurized Oxy-Fuel Combustion of Petroleum Coke", 2020, Energies
  • "From Lab to Fab: Development and Deployment of Direct Air Capture of CO2", 2023, Energies

Eric Croiset's work appears frequently in journals such as Advanced Functional Materials, Energies, Combustion and Flame, ECS Meeting Abstracts, and the Journal of Catalysis, indicating sustained engagement with diverse publication venues in their field.

Best Publications

  • Techno-economic study of CO2 capture from an existing coal-fired power plant: MEA scrubbing vs. O2/CO2 recycle combustion

    D Singh;E Croiset;P.L Douglas;M.A Douglas

  • Combustion characteristics of coal in a mixture of oxygen and recycled flue gas

    Yewen Tan;Eric Croiset;Mark A. Douglas;Kelly V. Thambimuthu

  • Performance comparison of Fick’s, dusty-gas and Stefan–Maxwell models to predict the concentration overpotential of a SOFC anode

    R. Suwanwarangkul;E. Croiset;M.W. Fowler;P.L. Douglas

  • Review of methane catalytic cracking for hydrogen production

    Ashraf M. Amin;Eric Croiset;William Epling

  • Simulation of CO2 capture using MEA scrubbing: a flowsheet decomposition method

    C. Alie;L. Backham;E. Croiset;P.L. Douglas

  • NOx and SO2 emissions from O2/CO2 recycle coal combustion

    E. Croiset;K.V. Thambimuthu

  • Orbital Interactions in Bi-Sn Bimetallic Electrocatalysts for Highly Selective Electrochemical CO2 Reduction toward Formate Production

    Guobin Wen;Dong Un Lee;Bohua Ren;Fathy M. Hassan

  • Simulation of a tubular solid oxide fuel cell stack using AspenPlusTM unit operation models

    W. Zhang;E. Croiset;P.L. Douglas;M.W. Fowler

  • Hydrogen peroxide decomposition in supercritical water

    Eric Croiset;Steven F. Rice;Russell G. Hanush

  • High-Yield Biomass Charcoal†

    Michael Jerry Antal;Eric Croiset;Xiangfeng Dai;Carlos DeAlmeida

  • Experimental and modeling study of solid oxide fuel cell operating with syngas fuel

    R. Suwanwarangkul;E. Croiset;E. Entchev;S. Charojrochkul

  • Coal combustion in O2/CO2 mixtures compared with air

    Eric Croiset;Kelly Thambimuthu;Allan Palmer

  • Technoeconomic evaluation of IGCC power plants for CO2 avoidance

    Guillermo Ordorica-Garcia;Peter Douglas;Eric Croiset;Ligang Zheng

  • Dynamic modelling and control of MEA absorption processes for CO2 capture from power plants

    Thanita Nittaya;Peter L. Douglas;Eric Croiset;Luis A. Ricardez-Sandoval

  • Dynamic simulation of MEA absorption process for CO2 capture from power plants

    Noorlisa Harun;Thanita Nittaya;Peter L. Douglas;Eric Croiset

  • Ni/Mg–Al mixed oxide catalyst for the steam reforming of ethanol

    L.J.I. Coleman;W. Epling;R.R. Hudgins;E. Croiset

  • Synthesis and Characterization of γ-Fe2O3 for H2S Removal at Low Temperature

    Guan Huang;Enyun He;Zhongde Wang;Huiling Fan

  • Optimization Model for Energy Planning with CO2 Emission Considerations

    Haslenda Hashim;Peter Douglas;and Ali Elkamel;Eric Croiset

  • A multi-period optimization model for energy planning with CO2 emission consideration

    H. Mirzaesmaeeli;A. Elkamel;P.L. Douglas;E. Croiset

  • Methane dissociation on Ni (1 0 0), Ni (1 1 1), and Ni (5 5 3): A comparative density functional theory study

    Jingde Li;Eric Croiset;Luis Ricardez-Sandoval

  • Process analysis of CO2 capture from flue gas using carbonation/calcination cycles

    Li Zhen-shan;Cai Ning-sheng;Eric Croiset

Frequent Co-Authors

Peter L. Douglas
Peter L. Douglas University of Waterloo
Ali Elkamel
Ali Elkamel University of Waterloo
Luis A. Ricardez-Sandoval
Luis A. Ricardez-Sandoval University of Waterloo
William S. Epling
William S. Epling University of Virginia
Michael Fowler
Michael Fowler University of Waterloo
Suttichai Assabumrungrat
Suttichai Assabumrungrat Chulalongkorn University
Zhongwei Chen
Zhongwei Chen University of Waterloo
Haslenda Hashim
Haslenda Hashim University of Technology Malaysia
Ningsheng Cai
Ningsheng Cai Tsinghua University
Yixiang Shi
Yixiang Shi Tsinghua University

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