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Development of a CFD-DEM Model for a 1 MWth Chemical Looping Gasification Pilot Plant Using Biogenic Residues as Feedstock

Graf, Christoph ; Coors, Florian ; Marx, Falko ; Dieringer, Paul ; Zeneli, Myrto ; Stamatopoulos, Panagiotis ; Atsonios, Konstantinos ; Alobaid, Falah ; Ströhle, Jochen ; Epple, Bernd (2024)
Development of a CFD-DEM Model for a 1 MWth Chemical Looping Gasification Pilot Plant Using Biogenic Residues as Feedstock.
In: Energy & Fuels, 38 (19)
doi: 10.1021/acs.energyfuels.4c02571
Artikel, Bibliographie

Kurzbeschreibung (Abstract)

Chemical looping gasification (CLG) is a novel dual fluidized bed gasification process that enables the conversion of solid feedstocks to a nitrogen-free syngas through in situ air separation, avoiding a costly air separation unit. While there have been recent advances in experimental studies, modeling of CLG is almost exclusively restricted to lab-scale units or 1D models. In this study, a 3D CFD-DEM model of a 1 MWth fuel reactor for the conversion of solid biomass was developed. Due to the high computational demand of the DEM method, acoarse-grained approach was used in combination with asimplified reaction network. The hydrodynamics were modeled with an EMMS drag model. Simulations were conducted for two woody biomasses and wheat straw based on experimental data of a1 MWth CLG reactor. The model was able to predict the pressure profile over the reactor accurately, with amean error below 10%. Carbon conversion and oxygen carrier oxidation were in good agreement with the experimental data with mean deviations below 5%, while reasonable values below 8mol % mean error were achieved for the gas composition. Discrepancies in the gas composition as well as temperature profile indicate that further work is needed in the pyrolysis step of the model.

Typ des Eintrags: Artikel
Erschienen: 2024
Autor(en): Graf, Christoph ; Coors, Florian ; Marx, Falko ; Dieringer, Paul ; Zeneli, Myrto ; Stamatopoulos, Panagiotis ; Atsonios, Konstantinos ; Alobaid, Falah ; Ströhle, Jochen ; Epple, Bernd
Art des Eintrags: Bibliographie
Titel: Development of a CFD-DEM Model for a 1 MWth Chemical Looping Gasification Pilot Plant Using Biogenic Residues as Feedstock
Sprache: Englisch
Publikationsjahr: 3 Oktober 2024
Ort: Columbus, Ohio
Verlag: American Chemical Society
Titel der Zeitschrift, Zeitung oder Schriftenreihe: Energy & Fuels
Jahrgang/Volume einer Zeitschrift: 38
(Heft-)Nummer: 19
DOI: 10.1021/acs.energyfuels.4c02571
Kurzbeschreibung (Abstract):

Chemical looping gasification (CLG) is a novel dual fluidized bed gasification process that enables the conversion of solid feedstocks to a nitrogen-free syngas through in situ air separation, avoiding a costly air separation unit. While there have been recent advances in experimental studies, modeling of CLG is almost exclusively restricted to lab-scale units or 1D models. In this study, a 3D CFD-DEM model of a 1 MWth fuel reactor for the conversion of solid biomass was developed. Due to the high computational demand of the DEM method, acoarse-grained approach was used in combination with asimplified reaction network. The hydrodynamics were modeled with an EMMS drag model. Simulations were conducted for two woody biomasses and wheat straw based on experimental data of a1 MWth CLG reactor. The model was able to predict the pressure profile over the reactor accurately, with amean error below 10%. Carbon conversion and oxygen carrier oxidation were in good agreement with the experimental data with mean deviations below 5%, while reasonable values below 8mol % mean error were achieved for the gas composition. Discrepancies in the gas composition as well as temperature profile indicate that further work is needed in the pyrolysis step of the model.

Freie Schlagworte: Biomass, Chemical looping combustion, Chemical looping gasification, Collisions, Gases
Fachbereich(e)/-gebiet(e): 16 Fachbereich Maschinenbau
16 Fachbereich Maschinenbau > Institut für Energiesysteme und Energietechnik (EST)
Zentrale Einrichtungen
Zentrale Einrichtungen > Hochschulrechenzentrum (HRZ)
Zentrale Einrichtungen > Hochschulrechenzentrum (HRZ) > Hochleistungsrechner
TU-Projekte: EC/H2020|817841|CLARA
Hinterlegungsdatum: 11 Okt 2024 08:05
Letzte Änderung: 11 Okt 2024 08:05
PPN: 522174337
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