51cg

Dr Panagiotis Kechagiopoulos

Dr Panagiotis Kechagiopoulos
Dr Panagiotis Kechagiopoulos
Dr Panagiotis Kechagiopoulos

Reader

Accepting PhDs

51cg
Email Address
p.kechagiopoulos@abdn.ac.uk
Telephone Number
+44 (0)1224 272205
Office Address

School of Engineering, 
51cg, 
Fraser Noble Building (Room 278), 
King’s College, 
Aberdeen, AB24 3UE, 
United Kingdom

School/Department
School of Engineering




Biography

 
Experience
 
  • Reader in Chemical Engineering, 51cg (08/2022 - Present)
  • Senior Lecturer in Chemical Engineering, 51cg (08/2018 - 07/2022)
  • Lecturer in Chemical Engineering, 51cg (08/2014 - 07/2018)
  • Industrial Research Fund Technology Developer, Ghent University (06/2012 – 07/2014)
  • Post-doctoral Researcher, Ghent University, Laboratory for Chemical Technology (04/2010 – 05/2012)

Education

  • Master in Information Systems, Hellenic Open University (11/2012)
  • Doctor of Chemical Engineering, Aristotle University of Thessaloniki (07/2008)
  • Diploma in Chemical EngineeringAristotle University of Thessaloniki (11/2002)

Memberships and Affiliations

Internal Memberships

Chemical Processes and Materials group Research lead

Chemical Engineering Research lab coordinator 

Go Abroad coordinator in School of Engineering and Course coordinator for projects associated with Erasmus students (ES4071-8) and project abroad (EG4513, EG45PA-PB)

External Memberships

Reviewer for: ACS Applied Nano Materials, AIChE Journal, Applied Catalysis B: Environmental, Biomass and Bioenergy, Catalysis Today, Catalysis Science & Technology, Chemical Communications, Chemical Engineering Journal, Chemical Engineering & Technology, Chemical Engineering Research and Design, Chemical Papers, Energy & Fuels, Energy Conversion and Management, Environmental Science & Technology, Frontiers in Energy Research, Fuel, Fuel Processing Technology, Industrial & Engineering Chemistry Research, International Journal of Chemical Reactor Engineering, International Journal of Hydrogen Energy, Journal of Material Cycles and Waste Management, Nature Catalysis, Nature Communications, Plasma Chemistry and Plasma Processing, Plasma Processes and Polymers, Powder Technology, Reaction Chemistry & Engineering, SN Applied Sciences, The Canadian Journal of Chemical Engineering

Latest Publications

  • Dry reforming of methane via plasma-catalysis: Interplay between plasma, active metal, support, and reactor configuration

    Kechagiopoulos, P. N., Ogunyinka, O., McCue, A. J.
    Chemical Engineering Journal, 181700
    Contributions to Journals: Articles
  • Electrochemical conversion of CO2 plasmas

    Ibrahim Hussein, H. E. M., Kechagiopoulos, P., Cuesta Ciscar, A.
    Sustainable Energy and Fuels, vol. 10, no. 9, pp. 2327–2343
    Contributions to Journals: Articles
  • Microkinetic modelling of CO2 and methane conversion into syngas on a low metal-loaded Rh/Al2O3 catalyst: Effect of co-feeding reaction products

    Navarro-Puyuelo, A., Reyero, I., Bimbela, F., Kechagiopoulos, P. N., Gandía, L. M.
    Journal of Industrial and Engineering Chemistry, vol. 154, pp. 189-202
    Contributions to Journals: Articles
  • Comparative analysis of aromatic compounds steam reforming over Rh supported on γ-Al2O3

    Zhurka, M., Kechagiopoulos, P.
    Frontiers of Chemical Science and Engineering, vol. 19, 18
    Contributions to Journals: Articles
  • Non-Oxidative Coupling of Methane via Plasma-Catalysis Over M/γ-Al2O3 Catalysts (M = Ni, Fe, Rh, Pt and Pd): Impact of Active Metal and Noble Gas Co-Feeding

    Kechagiopoulos, P., Rogers, J., Maitre, P. A., McCue, A., Campbell Bannerman, M.
    Plasma Chemistry and Plasma Processing, vol. 44, no. 6, pp. 2057–2085
    Contributions to Journals: Articles

View My Publications

Research

Research Overview

  • Chemical reaction engineering
  • Micro-kinetic modelling
  • Heterogeneous catalysis
  • Biomass conversion technologies: pyrolysis, gasification
  • Methane conversion technologies: reforming, partial oxidation, oxidative coupling
  • Novel reactor concepts: spouted beds, membrane reactors

Research Areas

Accepting PhDs

I am currently accepting PhDs in Engineering.

Please get in touch if you would like to discuss your research ideas further.

Engineering

  • Accepting PhDs

Research Specialisms

  • Chemical Engineering

Our research specialisms are based on the Higher Education Classification of Subjects (HECoS) which is , published under the licence.

Current Research

Current research focuses on the application of, experimentally validated, computational methods to design and optimize chemical engineering processes for the efficient utilization of energy sources. The work primarily aims at the development of novel reactor concepts for the efficient conversion of natural gas and, more specifically, methane. Low-temperature steam reforming for the production of high-purity hydrogen as an energy carrier and Oxidative coupling for the one-step conversion of methane to ethylene as a chemicals building block are major application fields. In this regard, microkinetic models, consisting of elaborate elementary step reaction networks, are developed to accurately describe the occurring chemistry. Thermodynamic consistency is preserved, while a multitude of methods (transition state and collision theory, Evans-Polanyi relationships and unity bond index-quadratic exponential potential (UBI-QEP) calculations) are applied for the a priori determination of kinetic parameters. Intrinsic kinetic measurements of catalyst reactivity/selectivity are used to validate the developed models. The further integration of these kinetic models in reactor-scale simulations provides a deeper understanding that opens the road to knowledge-based process design and optimization and, ultimately, intensification. Novel reactor concepts, such as membrane configurations, are investigated to overcome thermodynamic limitations and design modular and energy efficient processes. Further extensions of the methodology are to be applied in the conversion of biomass-derived oxygenates to fuels and chemicals.

Funding and Grants

  • Henry Royce Institute: "Innovative catalytic materials for plasma reforming of biogas from anaerobic digestion of food waste", £87,126, Co-I (Prof D. Dionisi, PI)
  • Innovate UK: "51cg and Oxford Instruments Nanotechnology Tools Limited KTP", £286,174, Co-I (Dr S. Doyle, PI)
  • BEIS: "Hydrogen from organic waste with an integrated biological-thermal-electrochemical process", £250,998, Co-I (Prof D. Dionisi, PI)
  • EPSRC (via UK Catalysis Hub): "Plasma-catalytic upgrading of biogas: Computational and experimental catalyst development", £115,161, PI
  • The Royal Society International Exchanges (IES\R1\211069): “Plasma-assisted catalytic oxidation of hydrogen with application to heat generation: multiscale modelling and process design”, £11,813.00, PI
  • EPSRC Adventurous Net Zero Energy Research (EP/X000931/1): “Electrocatalysis in non-thermal plasma for energy storage”, £252,181.75, Co-I (Prof A. Cuesta Ciscar, PI)
  • The Royal Society Research Grant (RGS\R1\191461): “Optical emission spectroscopy as a validation method of microkinetic models of plasma enhanced catalytic systems with application to methane activation”, £20,000.00, PI
  • EPSRC New Investigator Award (EP/R031800/1): “Catplaskin: The microkinetics of non-thermal plasma-assisted heterogeneous catalysis with application to the non-oxidative coupling of methane”, £140,856.00, PI
  • EPSRC (via UK Catalysis Hub): "Non-thermal plasma promotion of low temperature water gas shift catalysts", £86,448.70, Co-I (Prof J. Anderson, PI)
Teaching

Teaching Responsibilities

Current

EX40HC Process Control (sole contributor) 

EG55P7 Process Plant, Equipment & Operations (sole contributor)

EG4013/14 Thesis supervisor, MEng/BEng in Chemical Engineering

Past

EG5597 Advanced Chemical Engineering (contributor)

EG5565 Meng Group Design (Chemical Engineering contributor)

EG5085 Supervisor, Advanced Topics

Publications

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  • Elucidation of metal and support effects during ethanol steam reforming over Ni and Rh based catalysts supported on (CeO2)-ZrO2-La2O3

    Zhurka, M. D., Lemonidou, A. A., Kechagiopoulos, P. N.
    Catalysis Today, vol. 368, pp. 161-172
    Contributions to Journals: Articles
  • Modelling excited species and their role on kinetic pathways in the non-oxidative coupling of methane by dielectric barrier discharge

    Maitre, P., Bieniek, M. S., Kechagiopoulos, P.
    Chemical Engineering Science, vol. 234, 116399
    Contributions to Journals: Articles
  • Kinetic features of ethanol steam reforming and decomposition using a biochar-supported Ni catalyst

    Afolabi, A. F., Kechagiopoulos, P. N., Liu, Y., Li, C.
    Fuel Processing Technology, vol. 212, 106622
    Contributions to Journals: Articles
  • NADH Regeneration: A Case Study of Pt-catalyzed NAD+ Reduction with H2

    Saba, T., Li, J., Burnett, J. W., Howe, R., Kechagiopoulos, P., Wang, X.
    ACS Catalysis, vol. 11, no. 1, pp. 283-289
    Contributions to Journals: Articles
  • Plasma-enhanced catalysis for the upgrading of methane: A review of modelling and simulation methods

    Maitre, P., Bieniek, M. S., Kechagiopoulos, P.
    Reaction Chemistry & Engineering , vol. 2020, no. 5, pp. 814–837
    Contributions to Journals: Articles
  • A facile analytical method for reliable selectivity examination in cofactor NADH regeneration

    Saba, T., Burnett, J. W. H., Li, J., Kechagiopoulos, P., Wang, X.
    Chemical Communications, vol. 56, no. 8, pp. 1231-1234
    Contributions to Journals: Articles
  • Assessing the environmental performance of NADH regeneration methods: A cleaner process using recyclable Pt/Fe3O4 and hydrogen

    Saba, T., Burnett, J. W. H., Li, J., Wang, X., Anderson, J. A., Kechagiopoulos, P. N., Wang, X.
    Catalysis Today, vol. 339, pp. 281-288
    Contributions to Journals: Articles
  • Microkinetic modelling and reaction pathway analysis of the steam reforming of ethanol over Ni/SiO2

    Afolabi, A. T. F., Li, C., Kechagiopoulos, P. N.
    International Journal of Hydrogen Energy, vol. 44, no. 41, pp. 22816-22830
    Contributions to Journals: Articles
  • Influencing selectivity in the oxidative coupling of methane by modulating oxygen permeation in a variable thickness membrane reactor

    Onoja, O. P., Wang, X., Kechagiopoulos, P. N.
    Chemical Engineering and Processing, vol. 135, pp. 156-167
    Contributions to Journals: Articles
  • Kinetic analysis of the steam reforming of ethanol over Ni/SiO2 for the elucidation of metal dominated reaction pathways

    Zhurka, M. D., Lemonidou, A., Anderson, J. A., Kechagiopoulos, P.
    Reaction Chemistry & Engineering , vol. 3, no. 6, pp. 883-897
    Contributions to Journals: Articles
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