Green Plasma Technology I

ORAL · FT3 · ID: 3430471





Presentations

  • ORAL

    Publication: A. Böddecker et al., "The role of flow field dynamics in enhancing volatile organic compound conversion in a surface dielectric barrier discharge system," Journal of Physics D: Applied Physics, vol. 58, no. 2. IOP Publishing, p. 025208, Oct. 24, 2024. doi: 10.1088/1361-6463/ad8454

    A. Böddecker, "Optimisation and scaling of a surface dielectric barrier discharge system for volatile organic compound conversion," Ruhr-Universität Bochum, 2025. doi: 10.13154/294-12838.

    Presenters

    • Alexander Böddecker

      • Chair of Applied Electrodynamics and Plasma Technology, Ruhr University, Bochum, Germany

    Authors

    • Alexander Böddecker

      • Chair of Applied Electrodynamics and Plasma Technology, Ruhr University, Bochum, Germany
    • Maximilian Passmann

      • Chair of Hydraulic Fluid Machinery, Ruhr University Bochum, Bochum, Germany
    • Angie Natalia Torres Segura

      • Chair of Applied Electrodynamics and Plasma Technology, Ruhr University, Bochum, Germany
    • Arisa Bodnar

      • Chair of Applied Electrodynamics and Plasma Technology, Ruhr University Bochum, Bochum, Germany
    • Felix Awakowicz

      • Chair of Applied Electrodynamics and Plasma Technology, Ruhr University Bochum, Bochum, Germany
    • Timothy Oppotsch

      • Laboratory of Industrial Chemistry, Ruhr University Bochum, Bochum, Germany
    • Martin Muhler

      • Laboratory of Industrial Chemistry (LTC), Ruhr University Bochum, Bochum, Germany
    • Peter Awakowicz

      • Chair of Applied Electrodynamics and Plasma Technology, Ruhr University Bochum, Germany
    • Andrew R Gibson

      • University of York
      • York Plasma Institute, School of Physics, Engineering and Technology, University of York
      • York Plasma Institute, School of Physics, Engineering and Technology, University of York, United Kingdom
      • Ruhr University Bochum
    • Ihor Korolov

      • Chair of Applied Electrodynamics and Plasma Technology, Ruhr University Bochum, Bochum, Germany
      • Chair of Applied Electrodynamics and Plasma Technology, Ruhr University Bochum, Germany
    • Thomas Mussenbrock

      • Chair of Applied Electrodynamics and Plasma Technology, Ruhr University Bochum, Bochum, Germany

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  • ORAL

    Publication: Planned paper: From Pure H₂ to H₂–CO₂ Mixtures: A Study of Reductant Strategies in Plasma Iron Oxide Smelting Reduction

    Presenters

    • Jordan Nunes Figueiredo

      • King Abdullah Univeristy of Science and Technology (KAUST)

    Authors

    • Jordan Nunes Figueiredo

      • King Abdullah Univeristy of Science and Technology (KAUST)
    • Bassam Dally

      • King Abdullah University of Science and Technology
    • Deanna A. Lacoste

      • King Abdullah Univ of Sci & Tech (KAUST)

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  • ORAL

    Publication: [1] M. Scapinello, et al., Chem. Eng. & Process.: Process Intensification, 117, 120 (2017)
    [2] M. Wnukowski, Energies, 16, 6441 (2023)
    [3] Y. Xuchu, Chemical Engineering Journal, 499 (2024)
    [4] Y. Tian et al., Surface and Coatings Technology, 505, 132063 (2025)
    [5] Y. Tian et al., Plasma Sources Science and Technology, 34, 045018 (2025)

    Presenters

    • Assan Abdirakhmanov

      • Chimie des Interactions Plasma Surface (ChIPS), Université de Mons, Mons, 7000, Belgium

    Authors

    • Assan Abdirakhmanov

      • Chimie des Interactions Plasma Surface (ChIPS), Université de Mons, Mons, 7000, Belgium
    • Pierre Mathieu

      • Chimie des Interactions Plasma Surface (ChIPS), Université de Mons, Mons, 7000, Belgium
    • Yuan Tian

      • Chimie des Interactions Plasma Surface (ChIPS), Université de Mons, 7000, Belgium, Research Unit Plasma Technology (RUPT), Ghent University, 9000, Belgium
    • Carla Bittencourt

      • Chimie des Interactions Plasma Surface (ChIPS), Université de Mons, Mons, 7000, Belgium
    • Rony Snyders

      • Chimie des Interactions Plasma Surface (ChIPS), Université de Mons, Mons, 7000, Belgium; Materia Nova Research Center, Parc Initialis, Mons, 7000, Belgium

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  • ORAL

    Presenters

    • Xingyu Chen

      • Dutch Institute for Fundamental Energy Research (DIFFER), Eindhoven, The Netherlands

    Authors

    • Xingyu Chen

      • Dutch Institute for Fundamental Energy Research (DIFFER), Eindhoven, The Netherlands
    • Aleksandr Pikalev

      • Dutch Institute for Fundamental Energy Research (DIFFER), Eindhoven, The Netherlands
    • Vasco Guerra

      • Instituto de Plasmas e Fusão Nuclear, Instituto Superior Técnico, Lisbon University
      • Instituto de Plasmas e Fusão Nuclear, Instituto Superior Técnico, Universidade de Lisboa
      • Instituto Superior Tecnico
    • Guanjun Zhang

      • School of Electrical Engineering, Xi'an Jiaotong University, Xi'an, China
    • Richard van de Sanden

      • DIFFER, Eindhoven, The Netherlands
      • Dutch Institute for Fundamental Energy Research (DIFFER), Eindhoven, The Netherlands

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  • ORAL

    Publication: [1] Y. Yang, et al, Journal of Cleaner Production 376, 134347 (2022).
    [2] J. L. Fan, et al, Nature Climate Change 13 [8], 807 (2023)
    [3] J. Sun, et al, Current Opinion in Green and Sustainable Chemistry 40, 100752 (2023).
    [5] R. Snoeckx and A. Bogaerts, Chemical Society Reviews, 2017, 46, 5805–5863
    [6] P. Attri, et al, Frontiers in Physics 11, 1211166 (2023).
    [7] P. Attri, et al, Plasma Processes and Polymers 21, e2300141 (2024).
    [8] P. Attri, et al, Applied Physics Express 17, 046001(2024).
    [9] S. W. Fitriani, et al, Plasma Chemistry and Plasma Processing 17, 046001(2024).

    Presenters

    • Pankaj Attri

      • Kyushu University

    Authors

    • Pankaj Attri

      • Kyushu University
    • Sukuma W Fitriani

      • Kyushu University
    • Hibiki Otobe

      • Kyushu University
    • Naoya Hidaka

      • Kyushu University
    • Takamasa Okumura

      • Kyushu University
    • Masaharu Shiratani

      • Kyushu University
    • Kazunori Koga

      • Kyushu University

    View abstract →

  • ORAL

    Presenters

    • Bhaskar Chaudhury

      • Smart Energy Learning Center, DA-IICT, DAU, Gandhinagar,India
      • Group in Computational Science and HPC, DA-IICT, DAU, Gandhinagar, Gujarat 382007, India
      • Group in Computational Science and HPC, DA-IICT, DAU, Gandhinagar, India
      • Group in Computational Science and HPC, DAIICT, DAU, India.

    Authors

    • Bhaskar Chaudhury

      • Smart Energy Learning Center, DA-IICT, DAU, Gandhinagar,India
      • Group in Computational Science and HPC, DA-IICT, DAU, Gandhinagar, Gujarat 382007, India
      • Group in Computational Science and HPC, DA-IICT, DAU, Gandhinagar, India
      • Group in Computational Science and HPC, DAIICT, DAU, India.
    • Kalp K Pandya

      • Smart Energy Learning Center, DA-IICT, DAU, Gandhinagar,India
      • Smart Energy Learning Center, DA-IICT, DAU, Gandhinagar, India
    • Nirmal D Shah

      • Smart Energy Learning Center, DA-IICT, DAU, Gandhinagar,India
      • Smart Energy Learning Center, DA-IICT, DAU, Gandhinagar, India
      • Group in Computational Science and HPC, DAIICT, DAU, India.
    • Sahil Sadarangani

      • Smart Energy Learning Center, DA-IICT, DAU, Gandhinagar,India
    • Agam Shah

      • School of Computational Science & Engineering, College of Computing, Georgia Institute of Technology, Atlanta, USA

    View abstract →