Publications

Selina Hafner, Max Schmid, and Günter Scheffknecht. Investigation of the Sorption Enhanced Gasification Process in a Dual Fluidized Bed Pilot Plant using a Waste Derived Fuel. Proceedings of 13th International Conference of Fluidized Bed Technology, 10.-14.05.2021, 2021., 2021. [PUMA: deu from:ftus1 ifk]

Antti Pitkäoja, Jouni Ritvanen, Selina Hafner, Timo Hyppänen, and Günter Scheffknecht. Modeling of sorbent enhanced gasification utilizing waste-derived fuel. Proceedings of 13th International Conference of Fluidized Bed Technology, 10.-14.05.2021, 2021. [PUMA: deu from:ftus1 ifk]

Antti Pitkäoja, Jouni Ritvanen, Selina Hafner, Timo Hyppänen, and Günter Scheffknecht. Numerical modelling of sorption-enhanced gasification: Development of a fuel decomposition model. In ELSEVIER (Eds.), Fuel 289 (2021) 119868, 2021. [PUMA: deu from:ftus1 ifk]

Alessandro Poluzzia, Giulio Guandalinia, Isabel Martínez, Max Schimd, Selina Hafner, Reinhold Spörl, Filippo Sessa, Jérôme Laffely, and Matteo C. Romanoa. Sorption enhanced gasification (SEG) of biomass with CO2 capture for the production of Synthetic Natural Gas (SNG) and DME for transport sector with negative emissions. In SSRN (Eds.), 14th International Conference on Greenhouse Gas Control Technologies, GHGT-14, 21st -25th October 2018, Melbourne, Australia, 2018. [PUMA: deu from:ftus1 ifk] URL

Max Schmid, Christian Schmidberger, and Günter Scheffknecht. Modelling of fluidized bed steam-oxygen gasification of sewage sludge with AspenPlus® using thermochemical equilibrium and experimental data. In Chalmers University (Eds.), 24th Edition of the Fluidized Bed Conversion Conference, 8-11 May 2022, Gothenburg/Sweden, 2022. [PUMA: deu ifk]

Max Schmid, Christian Schmidberger, and Günter Scheffknecht. Modelling of fluidized bed steam-oxygen gasification of sewage sludge with AspenPlus® using thermochemical equilibrium and experimental data. In Chalmers University (Eds.), 24th Edition of the Fluidized Bed Conversion Conference, 8-11 May 2022, Gothenburg/Sweden, 2022. [PUMA: deu from:ftus1 ifk]

Nico Mader, Max Schmid, and Günter Scheffknecht. CO2 Capture by Entrained Flow Carbonation of Industrial Ca(OH)2 in a TRL 4-5 Test Rig. In GHGT-16 (Eds.), 16th International Conference on Greenhouse Gas Control Technologies, GHGT-16, 23rd -27th October 2022, Lyon, France, 2022. [PUMA: deu ifk]

Nico Mader, Max Schmid, and Günter Scheffknecht. CO2 Capture by Entrained Flow Carbonation of Industrial Ca(OH)2 in a TRL 4-5 Test Rig. In GHGT-16 (Eds.), 16th International Conference on Greenhouse Gas Control Technologies, GHGT-16, 23rd -27th October 2022, Lyon, France, 2022. [PUMA: deu from:ftus1 ifk]

Max Schmid, Christian Schmidberger, and Günter Scheffknecht. Modelling and simulation of fluidized bed steam-oxygen gasification of sewage sludge using thermochemical equilibrium and experimental data. In ELSEVIER (Eds.), FUEL Volume 341, 1 June 2023, 127595, 2023. [PUMA: deu ifk] URL

Max Schmid, Christian Schmidberger, and Günter Scheffknecht. Modelling and simulation of fluidized bed steam-oxygen gasification of sewage sludge using thermochemical equilibrium and experimental data. In ELSEVIER (Eds.), FUEL Volume 341, 1 June 2023, 127595, 2023. [PUMA: deu from:ftus1 ifk] URL

Thiansiri Kertthong, Max Schmid, and Günter Scheffknecht. Non-catalytic partial oxidation of methane in biomass-derived syngas with high steam and hydrogen content optimal for subsequent synthesis process. In Elsevier (Eds.), Journal of the Energy Institute, (105):251-261, 2022. [PUMA: deu from:ftus1 ifk]

Thiansiri Kertthong, Yen-Hau Chen, Max Schmid, and Günter Scheffknecht. Influence of gas atmosphere and role of tar on catalytic reforming of methane and tar model compounds: Special focus on syngas produced produced by sorption enhanced gasification. In Elsevier (Eds.), FUEL, (317)1235022022. [PUMA: deu from:ftus1 ifk]

Thiansiri Kertthong, Max Schmid, and Günter Scheffknecht. Synthesis Gas Upgrading Via Non-Catalytic Partial Oxidation of Methane with Regard to Sorption Enhanced Gasification. In EUBCE (Eds.), Proceedings of the 30th European Biomass Conference (EUBCE), 9-12 May 2022, 590-593, 2022. [PUMA: deu from:ftus1 ifk]

Joseba Moreno, Max Schmid, and Günter Scheffknecht. Experimental and process modelling study of the oxy-fuel combustion of solid recovered fuel at semi-industrial scale. 24th Fluidized Bed Conversion Conference (FBC24), 8 - 11 May, Gothenburg, Sweden, 2022. [PUMA: deu from:ftus1 ifk]

Joseba Moreno, Max Schmid, Steven Scharr, and Günter Scheffknecht. Oxy-Combustion of Solid Recovered Fuel in a Semi-Industrial CFB Reactor: On the Implications of Gas Atmosphere and Combustion Temperature. In ACS Publications (Eds.), ACS Omega 2022, 7, 10, 8950–8959, 2022. [PUMA: deu from:ftus1 ifk]

Joseba Moreno, Sally L. Homsy, Max Schmid, and Günter Scheffknecht. Calcium Looping: Sorbent and Process Characterization in a 20 kWth Dual Fluidized Bed. In ACS Publications (Eds.), Energy Fuels 35, 20, 16693–16704, 2021. [PUMA: deu from:ftus1 ifk]

Ashak Mahmud Parvez, Selina Hafner, Matthias Hornberger, Max Schmid, and Günter Scheffknecht. Sorption enhanced gasification (SEG) of biomass for tailored syngas production with in-situ CO2 capture: Current status, process scale-up experiences and outlook. In Elsevier (Eds.), Renewable and Sustainable Energy Reviews, Volume 141, May 2021, 110756, 2021. [PUMA: deu from:ftus1 ifk]

Thiansiri Kertthong, Yen-Hau Chen, Max Schmid, and Günter Scheffknecht. Steam reforming of hydrocarbons from sorption enhanced gasification of biomass: Influence of tar model compounds on methane conversion and catalyst behavior. In EUBCE (Eds.), Proceedings of the 29th European Biomass Conference (EUBCE), 26 - 29 April 2021, 522-525, 2021. [PUMA: deu from:ftus1 ifk]

Joseba Moreno, Matthias Hornberger, Max Schmid, and Günter Scheffknecht. Part-Load Operation of a Novel Calcium Looping System for Flexible CO2 Capture in Coal-Fired Power Plants. In ACS Publications (Eds.), Ind. Eng. Chem. Res. 60, 19, 7320–7330, 2021. [PUMA: deu from:ftus1 ifk]

Georg Hartfuß, and Markus Schatz. Thermodynamic analysis of the HAT-process for micro gas turbines. In Euroturbo (Eds.), 12th European Conference on Turbomachinery Fluid dynamics & Thermodynamics, Paper ID ETC2017-375, 2021. [PUMA: deu from:ftus1 ifk]