Wissenschaftliche Artikel

Müller, F. J., Jankovic, S., Fuchs, J., Dimande, D. F., Müller, S., & Winter, F. (2025). Eco-friendly ironmaking by biomass CO2 gasification: Process simulations for ecological and economic evaluation of CO2 recycling in direct reduction ironmaking. Energy Conversion and Management, 348. https://doi.org/10.1016/j.enconman.2025.120649 ( reposiTUm)
Chimani, F. M., Fuchs, J., Wallmüller, A., Matriciani, J. P., Schöny, G., & Müller, S. (2025). Enhancing CO₂ adsorption kinetics in direct air capture: The role of steam desorption in amine-based anion exchange sorbents. Journal of CO2 Utilization, 100, Article 103184. https://doi.org/10.1016/j.jcou.2025.103184 ( reposiTUm)
Müller, F. J. F., Fuchs, J., Fanjul Cuesta, M., Oblanca Gutiérrez, A., Pratschner, S., Müller, S., & Winter, F. (2024). CO₂ conversion to CO by fluidized bed biomass gasification: Analysis of operational parameters. Journal of CO2 Utilization, 81, Article 102706. https://doi.org/10.1016/j.jcou.2024.102706 ( reposiTUm)
Müller, F., Fuchs, J., Müller, S., & Winter, F. (2024). CO₂ conversion to CO by fluidized bed biomass gasification: Measuring CO₂ utilization via stable carbon isotope ratios. Journal of Co2 Utilization, 83, Article 102792. https://doi.org/10.1016/j.jcou.2024.102792 ( reposiTUm)
Fleiß, B., Priscak, J., Hammerschmid, M., Fuchs, J., Müller, S., & Hofbauer, H. (2024). CO₂ capture costs of chemical looping combustion of biomass: A comparison of natural and synthetic oxygen carrier. Journal of Energy Chemistry, 92, 296–310. https://doi.org/10.1016/j.jechem.2024.01.048 ( reposiTUm)
Chimani, F. M., Bhandari, A. A., Wallmüller, A., Schöny, G., Müller, S., & Fuchs, J. (2024). Evaluation of CO₂/H₂O Co-Adsorption Models for the Anion Exchange Resin Lewatit VPOC 1065 under Direct Air Capture Conditions Using a Novel Lab Setup. Separations, 11(6), Article 160. https://doi.org/10.3390/separations11060160 ( reposiTUm)
Bartik, A., Benedikt, F., Fuchs, J., Hofbauer, H., & Müller, S. (2023). Experimental investigation of hydrogen-intensified synthetic natural gas production via biomass gasification: a technical comparison of different production pathways. Biomass Conversion and Biorefinery. https://doi.org/10.1007/s13399-023-04341-3 ( reposiTUm)
Hammerschmid, M., Rosenfeld, D. C., Bartik, A., Benedikt, F., Fuchs, J., & Müller, S. (2023). Methodology for the Development of Virtual Representations within the Process Development Framework of Energy Plants: From Digital Model to Digital Predictive Twin—A Review. Energies, 16(6), Article 2641. https://doi.org/10.3390/en16062641 ( reposiTUm)
Fleiß, B., Priscak, J., Fuchs, J., Müller, S., & Hermann, H. (2023). Synthetic oxygen carrier C28 compared to natural ores for chemical looping combustion with solid fuels in 80 kWth pilot plant experiments. Fuel, 334(2), Article 126816. https://doi.org/10.1016/j.fuel.2022.126816 ( reposiTUm)
Fleiß, B., Bartik, A., Priscak, J., Benedikt, F., Fuchs, J., Müller, S., & Hofbauer, H. (2023). Experimental demonstration of 80 kWth chemical looping combustion of biogenic feedstock coupled with direct CO2 utilization by exhaust gas methanation. Biomass Conversion and Biorefinery. https://doi.org/10.1007/s13399-023-04311-9 ( reposiTUm)
Fleiß, B., Penthor, S., Müller, S., Hofbauer, H., & Fuchs, J. (2022). Holistic assessment of oxygen carriers for chemical looping combustion based on laboratory experiments and validation in 80 kW pilot plant. Fuel Processing Technology, 231(107249), 107249. https://doi.org/10.1016/j.fuproc.2022.107249 ( reposiTUm)
Bartik, A., Fuchs, J., Pacholik, G., Föttinger, K., Hofbauer, H., Müller, S., & Benedikt, F. (2022). Experimental investigation on the methanation of hydrogen-rich syngas in a bubbling fluidized bed reactor utilizing an optimized catalyst. Fuel Processing Technology, 237, Article 107402. https://doi.org/10.1016/j.fuproc.2022.107402 ( reposiTUm)
Mauerhofer, A. M., Müller, S., Benedikt, F., Fuchs, J., Bartik, A., & Hofbauer, H. (2021). CO2 gasification of biogenic fuels in a dual fluidized bed reactor system. Biomass Conversion and Biorefinery. https://doi.org/10.1007/s13399-019-00493-3 ( reposiTUm)
Hammerschmid, M., Müller, S., Fuchs, J., & Hofbauer, H. (2021). Evaluation of biomass-based production of below zero emission reducing gas for the iron and steel industry. Biomass Conversion and Biorefinery, 11(1), 169–187. https://doi.org/10.1007/s13399-020-00939-z ( reposiTUm)
Fleiß, B., Fuchs, J., Penthor, S., Arlt, S., Pachler, R., Müller, S., & Hofbauer, H. (2021). Innovative laboratory unit for pre-testing of oxygen carriers for chemical-looping combustion. Biomass Conversion and Biorefinery. https://doi.org/10.1007/s13399-021-01530-w ( reposiTUm)
Mauerhofer, A. M., Müller, S., Bartik, A., Benedikt, F., Fuchs, J., Hammerschmid, M., & Hofbauer, H. (2021). Conversion of CO₂ during the DFB biomass gasification process. Biomass Conversion and Biorefinery, 11(1), 15–27. https://doi.org/10.1007/s13399-020-00822-x ( reposiTUm)
Fürsatz, K., Fuchs, J., Benedikt, F., Kuba, M., & Hofbauer, H. (2021). Effect of biomass fuel ash and bed material on the product gas composition in DFB steam gasification. Energy, 219, 1–11. https://doi.org/10.1016/j.energy.2020.119650 ( reposiTUm)
Schmid, J. C., Benedikt, F., Fuchs, J., Mauerhofer, A. M., Müller, S., & Hofbauer, H. (2021). Syngas for biorefineries from thermochemical gasification of lignocellulosic fuels and residues—5 years’ experience with an advanced dual fluidized bed gasifier design. Biomass Conversion and Biorefinery, 2405–2442. https://doi.org/10.1007/s13399-019-00486-2 ( reposiTUm)
Müller, S., Theiss, L., Fleiß, B., Hammerschmid, M., Fuchs, J., Penthor, S., Rosenfeld, D. C., Lehner, M., & Hofbauer, H. (2021). Dual fluidized bed based technologies for carbon dioxide reduction - example hot metal production. Biomass Conversion and Biorefinery, 11(1), 159–168. https://doi.org/10.1007/s13399-020-01021-4 ( reposiTUm)
Fuchs, J., Schmid, J., Müller, S., Mauerhofer, A. M., Benedikt, F., & Hofbauer, H. (2020). The impact of gasification temperature on the process characteristics of sorption enhanced reforming of biomass. Biomass Conversion and Biorefinery. https://doi.org/10.1007/s13399-019-00439-9 ( reposiTUm)
Mauerhofer, A. M., Schmid, J. C., Benedikt, F., Fuchs, J., Müller, S., & Hofbauer, H. (2019). Dual fluidized bed steam gasification: Change of product gas quality along the reactor height. Energy, 173, 1256–1272. https://doi.org/10.1016/j.energy.2019.02.025 ( reposiTUm)
Mauerhofer, A. M., Fuchs, J., Müller, S., Benedikt, F., Schmid, J. C., & Hofbauer, H. (2019). CO₂ gasification in a dual fluidized bed reactor system: Impact on the product gas composition. Fuel, 253, 1605–1616. https://doi.org/10.1016/j.fuel.2019.04.168 ( reposiTUm)
Fuchs, J., Schmid, J. C., Müller, S., & Hofbauer, H. (2019). Dual fluidized bed gasification of biomass with selective carbon dioxide removal and limestone as bed material: A review. Renewable and Sustainable Energy Reviews, 107, 212–231. https://doi.org/10.1016/j.rser.2019.03.013 ( reposiTUm)
Aghaalikhani, A., Schmid, J. C., Borello, D., Fuchs, J., Benedikt, F., Hofbauer, H., Rispoli, F., Henriksen, U. B., Sárossy, Z., & Cedola, L. (2019). Detailed modelling of biomass steam gasification in a dual fluidized bed gasifier with temperature variation. Renewable Energy, 143, 703–718. https://doi.org/10.1016/j.renene.2019.05.022 ( reposiTUm)
Fuchs, J., Müller, S., Schmid, J. C., & Hofbauer, H. (2019). A kinetic model of carbonation and calcination of limestone for sorption enhanced reforming of biomass. International Journal of Greenhouse Gas Control, 90(102787), 102787. https://doi.org/10.1016/j.ijggc.2019.102787 ( reposiTUm)
Benedikt, F., Schmid, J. C., Fuchs, J., Mauerhofer, A. M., Müller, S., & Hofbauer, H. (2018). Fuel flexible gasification with an advanced 100 kW dual fluidized bed steam gasification pilot plant. Energy, 164, 329–343. https://doi.org/10.1016/j.energy.2018.08.146 ( reposiTUm)
Fuchs, J., Schmid, J. C., Benedikt, F., Müller, S., Hofbauer, H., Stocker, H., Kieberger, N., & Bürgler, T. (2018). The impact of bed material cycle rate on in-situ CO₂ removal for sorption enhanced reforming of different fuel types. Energy, 162, 35–44. https://doi.org/10.1016/j.energy.2018.07.199 ( reposiTUm)
Mauerhofer, A. M., Benedikt, F., Schmid, J. C., Fuchs, J., Müller, S., & Hofbauer, H. (2018). Influence of different bed material mixtures on dual fluidized bed steam gasification. Energy, 157, 957–968. https://doi.org/10.1016/j.energy.2018.05.158 ( reposiTUm)
Fuchs, J., Schmid, J. C., Benedikt, F., Mauerhofer, A. M., Müller, S., & Hofbauer, H. (2018). A general method for the determination of the entrainment in fluidized beds. The International Journal of Multiphysics, 12(4), 359–371. http://hdl.handle.net/20.500.12708/144634 ( reposiTUm)
Benedikt, F., Fuchs, J., Schmid, J. C., Müller, S., & Hofbauer, H. (2017). Advanced dual fluidized bed steam gasification of wood and lignite with calcite as bed material. Korean Journal of Chemical Engineering, 34(9), 2548–2558. https://doi.org/10.1007/s11814-017-0141-y ( reposiTUm)
Müller, S., Fuchs, J., Schmid, J. C., Benedikt, F., & Hofbauer, H. (2017). Experimental development of sorption enhanced reforming by the use of an advanced gasification test plant. International Journal of Hydrogen Energy, 42(50), 29694–29707. https://doi.org/10.1016/j.ijhydene.2017.10.119 ( reposiTUm)

Beiträge in Tagungsbänden

Fürsatz, K., Kuba, M., Fuchs, J., Skoglund, N., & Hofbauer, H. (2021). In situ Activation of K feldspar by Fuel Ash Layers in DFB Steam Gasification. In Agenda (p. 1). http://hdl.handle.net/20.500.12708/50836 ( reposiTUm)
Bartik, A., Benedikt, F., Fuchs, J., Hofbauer, H., & Müller, S. (2021). SNG production via gasification and catalytic methanation: Latest developments at TU Wien. In Conference Proceedings (pp. 61–64). http://hdl.handle.net/20.500.12708/49683 ( reposiTUm)
Veress, M., Bartik, A., Benedikt, F., Hammerschmid, M., Fuchs, J., Müller, S., & Hofbauer, H. (2020). Development and Techno-Economical Evaluation of an Optimized Concept for Industrial Bio-SNG Production from Sewage Sludge. In Book of Abstracts (pp. 901–911). http://hdl.handle.net/20.500.12708/49612 ( reposiTUm)
Bartik, A., Fuchs, J., Müller, S., & Hofbauer, H. (2020). Development of an internally circulating fluidized bed for catalytic methanation of syngas. In C. Jordan (Ed.), Proceedings of the 16th Minisymposium Verfahrenstechnik and 7th Partikelforum (TU Wien, Sept. 21/22, 2020) (pp. MoV2-(04) page 1-MoV2-(04) page 9). chemical-engineering.at. https://doi.org/10.34726/566 ( reposiTUm)
Bartik, A., Fuchs, J., Müller, S., & Hofbauer, H. (2020). Development of an internally circulating fluidized bed for catalytic methanation of syngas. In C. Jordan (Ed.), Proceedings of the 16. Minisymposium Verfahrenstechnik & 7. Partikelforum (p. 9). http://hdl.handle.net/20.500.12708/49624 ( reposiTUm)
Fuchs, J., Benedikt, F., Mauerhofer, A. M., Bartik, A., Müller, S., & Hofbauer, H. (2019). Waste to Energy with the Dual Fluidized Bed Gasification Technology at TU Wien. In Proceedings (p. 1). http://hdl.handle.net/20.500.12708/50476 ( reposiTUm)
Fuchs, J., Mauerhofer, A. M., Penthor, S., Benedikt, F., Bartik, A., Hammerschmid, M., Müller, S., & Hofbauer, H. (2019). Dual fluidized bed based technologies for carbon dioxide reduction. In Proceedings of the ICPS 19 (pp. 202–209). Technische Universität Wien. https://doi.org/10.34726/102 ( reposiTUm)
Fuchs, J., Mauerhofer, A. M., Penthor, S., Benedikt, F., Bartik, A., Hammerschmid, M., Müller, S., & Hofbauer, H. (2019). Dual fluidized bed based technologies for carbon dioxide reduction. In Proceedings (p. 8). Technische Universität Wien. http://hdl.handle.net/20.500.12708/50666 ( reposiTUm)
Fürsatz, K., Fuchs, J., Bartik, A., Kuba, M., & Hofbauer, H. (2019). Influence of fuel ash and bed material on the water-gas-shift equilibrium in DFB biomass steam gasification. In Proceedings (p. 10). Technische Universität Wien. http://hdl.handle.net/20.500.12708/50669 ( reposiTUm)
Hammerschmid, M., Müller, S., Fuchs, J., & Hofbauer, H. (2019). Evaluation of Sorption Enhanced Reforming in Combination with Oxyfuel Combustion for the Sequestration of CO2. In Proceedings (p. 11). Technische Universität Wien. http://hdl.handle.net/20.500.12708/50682 ( reposiTUm)
Mauerhofer, A. M., Müller, S., Benedikt, F., Fuchs, J., Bartik, A., Hammerschmid, M., & Hofbauer, H. (2019). Dual fluidized bed biomass gasification: Temperature variation using pure CO2 as gasification agent. In Proceedings (p. 10). Technische Universität Wien. http://hdl.handle.net/20.500.12708/50685 ( reposiTUm)
Müller, S., Theiss, L., Hammerschmid, M., Fuchs, J., Rosenfeld, D. C., Lehner, M., & Hofbauer, H. (2019). Hot Metal Production with Reduced Fossil Carbon Usage. In Proceedings of the ICPS 19 (pp. 309–311). Technische Universität Wien. https://doi.org/10.34726/117 ( reposiTUm)
Müller, S., Theiss, L., Hammerschmid, M., Fuchs, J., Rosenfeld, D. C., Lehner, M., & Hofbauer, H. (2019). Hot Metal Production with Reduced Fossil Carbon Usage. In Proceedings (p. 3). Technische Universität Wien. http://hdl.handle.net/20.500.12708/50667 ( reposiTUm)
Schmid, J., Bartik, A., Benedikt, F., Mauerhofer, A. M., Fuchs, J., Schanz, E., Reisinger, S., Nowak, B., Bühler, F., Österreicher, M., Lunzer, A., Walcher, C., Müller, S., Fuchs, M., & Hofbauer, H. (2019). Steam gasification of sewage sludge for synthesis processes. In Proceedings (p. 9). Technische Universität Wien. http://hdl.handle.net/20.500.12708/50679 ( reposiTUm)
Fuchs, J. (2018). State of research in the field of dual fluidized bed steam gasification of biomass with in-situ CO2 capture. In VSS 2018 (pp. 116–117). Book-of-Abstracts.com. http://hdl.handle.net/20.500.12708/50189 ( reposiTUm)
Fuchs, J., Schmid, J. C., Müller, S., & Hofbauer, H. (2018). Sorption Enhanced Reforming: Transport Characteristics of CO2 and Char. In Proceedings of the 11#^{th} International Conference on Sustainable Energy & Environmental Protection, Vol. 1 (p. 6). http://hdl.handle.net/20.500.12708/50190 ( reposiTUm)
Aghaalikhani, A., Schmid, J. C., Borello, D., Fuchs, J., Benedikt, F., Hofbauer, H., Rispoli, F., Henriksen, U. B., & Sárossy, Z. (2018). Detailed modelling of biomass steam gasification with a dual fluidized bed gasifier - validation by experimental data from temperature variation. In Proceedings (p. 22). http://hdl.handle.net/20.500.12708/50250 ( reposiTUm)
Fuchs, J., Schmid, J. C., Benedikt, F., Mauerhofer, A. M., Penthor, S., Müller, S., & Hofbauer, H. (2018). Influence of Bed Material Cycle Rate and Temperatures on the CO2 Transport during Sorption Enhanced Reforming of Biomass. In Proceedings (p. 8). http://hdl.handle.net/20.500.12708/50395 ( reposiTUm)
Fuchs, J., Müller, S., & Hofbauer, H. (2017). Ash Related Limitations of Dual Fluidized Bed Steam Gasification. In Book of Abstracts. 13. Minisymposium Verfahrenstechnik (13#^{th} Minisymposium Chemical and Process Engineering), Innsbruck, Austria. http://hdl.handle.net/20.500.12708/49766 ( reposiTUm)
Fuchs, J., Müller, S., Schmid, J. C., Hofbauer, H., Stocker, H., Kieberger, N., & Bürgler, T. (2017). Sorption Enhanced Reforming of Different Fuel Types for the Production of a Hydrogen-Rich Reduction Gas. In Bioenergy and Biofuels. SEEP 2017 - 10#^{th} International Conference on Sustainable Energy and Environmental Protection, Bled, Slovenia. https://doi.org/10.18690/978-961-286-048-6.25 ( reposiTUm)
Schmid, J. C., Fuchs, J., Benedikt, F., Mauerhofer, A. M., Müller, S., Hofbauer, H., Stocker, H., Kieberger, N., & Bürgler, T. (2017). Sorption Enhanced Reforming with the Novel Dual Fluidized Bed Test Plant at TU Wien. In L. Ek, H. Ehrnrooth, N. Scarlat, A. Grassi, & P. Helm (Eds.), Papers of the 25th European Biomass Conference : Setting the course for a biobased economy (pp. 421–428). ETA-Florence Renewable Energies. https://doi.org/10.5071/25thEUBCE2017-2BO.2.2 ( reposiTUm)
Fuchs, J., Müller, S., Aguiari, C. J., Schmid, J. C., & Hofbauer, H. (2016). The Novel Dual Fluidized Bed - Gasifier at TU Wien Part II: Gasification of Alternative Fuels. In Conference Proceedings (pp. 65–69). Verlag der Technischen Universität Graz. http://hdl.handle.net/20.500.12708/49290 ( reposiTUm)
Benedikt, F., Fuchs, J., Schmid, J. C., & Hofbauer, H. (2016). The Novel Dual Fluidized Bed - Gasifier at TU Wien Part 1: Parameter Variation with Wood Pellets. In Conference Proceedings (pp. 59–63). Verlag der Technischen Universität Graz. http://hdl.handle.net/20.500.12708/49289 ( reposiTUm)
Benedikt, F., Fuchs, J., Schmid, J. C., Müller, S., & Hofbauer, H. (2016). Advanced dual fluidized bed steam gasification of wood and Lignite with calcite as bed material. In iSGA-5 (p. 193). http://hdl.handle.net/20.500.12708/49446 ( reposiTUm)
Müller, S., Fuchs, J., Benedikt, F., Schmid, J. C., & Hofbauer, H. (2016). Optimization of Sorption Enhanced Reforming by the use of an Advanced Gasification Test Plant at TU Wien. In iSGA-5 (p. 91). http://hdl.handle.net/20.500.12708/49447 ( reposiTUm)
Fuchs, J., Schmid, J. C., & Hofbauer, H. (2013). Kaltmodelluntersuchungen zu einer innovativen Zweibettwirbelschicht. In Tagungsband (Book of Abstracts) (pp. 48–52). http://hdl.handle.net/20.500.12708/48143 ( reposiTUm)

Präsentationen

Wallmüller, A., Chimani, F. M., Müller, S., & Fuchs, J. (2024, July 10). Investigation of CO2 Adsorption Kinetics of Five Ion Exchange Resins for Direct Air Capture [Conference Presentation]. IEX 2024: Ion exchange for a sustainable future, Homerton College, Cambridge, United Kingdom of Great Britain and Northern Ireland (the). ( reposiTUm)
Fleiß, B., Fuchs, J., Müller, S., & Hofbauer, H. (2024, September). Impurity balance during 80 kWth pilot plant operation with bark and necessary gas cleaning steps [Conference Presentation]. 7th International Conference on Chemical Looping, Banff, Canada. https://doi.org/10.34726/7960 ( reposiTUm)
Fleiß, B., Fuchs, J., Bartik, A., Benedikt, F., Müller, S., & Hofbauer, H. (2022, September 19). Experimental development of chemical looping combustion with biogenic solid fuels at TU Wien [Conference Presentation]. 6th International Conference on Chemical Looping, Zaragoza, Spain. https://doi.org/10.34726/3726 ( reposiTUm)
Benedikt, F., Mauerhofer, A. M., Schmid, J., Fuchs, J., Hammerschmid, M., Bartik, A., Müller, S., & Hofbauer, H. (2019). Current Developments in DFB Gasification of Biogenic Residues:Experiences from Lab to Industrial Scale. ICPS 19 - International Conference on Polygerneration Strategies, Wien, Austria. http://hdl.handle.net/20.500.12708/101392 ( reposiTUm)
Benedikt, F., Mauerhofer, A. M., Schmid, J., Fuchs, J., Hammerschmid, M., Bartik, A., Müller, S., & Hofbauer, H. (2019). Experimental development of fuel flexible dual fluidized bed gasification to produce syngas. 79#^{th} IEA FBC Meeting, Wien, Austria. http://hdl.handle.net/20.500.12708/101291 ( reposiTUm)
Aghaalikhani, A., Schmid, J. C., Fuchs, J., Hofbauer, H., Borello, D., & Rispoli, F. (2018). Model to simulate the influence of the gasification temperature during dual fluidized bed steam gasification of wood with olivine sand as bed material [Poster Presentation]. 1. http://hdl.handle.net/20.500.12708/50191 ( reposiTUm)
Benedikt, F., Müller, S., Fuchs, J., Schmid, J. C., & Hofbauer, H. (2017). Dual fluidized bed steam gasification of alternative fuel types enabling fuel production. Korea - Austria Energy & Environment Forum - Bioenergy, Air Quality, and Machine Learning -, Wien, Austria. http://hdl.handle.net/20.500.12708/100412 ( reposiTUm)
Fuchs, J., Wagner, K., Kuba, M., Müller, S., Schmid, J. C., & Hofbauer, H. (2017). ThermischeVergasung minderwertigerReststoffe zurProduktionvon Wertstoffenund Energie. Blickpunkt Forschung: Urbane Produktion @ TU Wien, Wien, Austria. http://hdl.handle.net/20.500.12708/100623 ( reposiTUm)
Fuchs, J., Mauerhofer, A. M., & Schmid, J. C. (2017). Variation of fuels and bed materials for dual fluidized bed steam gasification. Workshop: Recent developments in fluidized bed biomass gasification, Wien, Austria. http://hdl.handle.net/20.500.12708/100313 ( reposiTUm)
Benedikt, F., Fuchs, J., Mauerhofer, A. M., Müller, S., Schmid, J. C., & Hofbauer, H. (2017). Results from the 100 kW dual fluidized bed gasifier at TU Wien. IEA FBC and IEA Bioenergy Task 33 Gasification of Biomass and Waste Joint Workshop, Skive, Denmark. http://hdl.handle.net/20.500.12708/100413 ( reposiTUm)
Schmid, J. C., Benedikt, F., Fuchs, J., Müller, S., & Hofbauer, H. (2016). Die Zweibett-Wirbelschicht-Dampfvergasung als Grundlage für die Umwandlung von Festbrennstoffen in hochwertige Energieträger. Lange Nacht der Forschung, Wien, Austria. http://hdl.handle.net/20.500.12708/99961 ( reposiTUm)
Schmid, J. C., Fuchs, J., Benedikt, F., Müller, S., & Hofbauer, H. (2016). Development of Dual Fluidized Bed Steam Gasification at TU Wien. Lange Nacht der Forschung, Wien, Austria. http://hdl.handle.net/20.500.12708/99962 ( reposiTUm)

Berichte

Konior, A. W., Böhm, B., & Fuchs, J. (2025). D3.1 Refining boundaries of the CLpre process. http://hdl.handle.net/20.500.12708/226228 ( reposiTUm)
Fuchs, J., Rosenfeld, D. C., Fleiß, B., Müller, S., Abbaspour, N., & Winter, F. (2022). Final report for pre-evaluation of iron ore reduction with hydrogen. http://hdl.handle.net/20.500.12708/154059 ( reposiTUm)
Fuchs, J., Rosenfeld, D. C., Müller, S., Abbaspour, N., & Winter, F. (2022). Preliminary process flow chart (D1) and kinetic data for HSC model of SMSgroup (D2). http://hdl.handle.net/20.500.12708/154240 ( reposiTUm)
Fuchs, J., Rosenfeld, D. C., Müller, S., Winter, F., & Abbaspour, N. (2022). Interim Report. http://hdl.handle.net/20.500.12708/154166 ( reposiTUm)
Fleiß, B., Fuchs, J., Müller, S., & Hofbauer, H. (2022). Chemical Looping for efficient biomass utilization: Second interim report submitted to BEST– Bioenergy and Sustainable Technologies GmbH (Second interim report). https://doi.org/10.34726/3282 ( reposiTUm)
Müller, F. J. F., Fuchs, J., Rosenfeld, D. C., & Müller, S. (2022). CO2 Reduction for Ironmaking by Utilization of Process Gases, Part 1. http://hdl.handle.net/20.500.12708/153717 ( reposiTUm)
Fleiß, B., Fuchs, J., Müller, S., & Hofbauer, H. (2021). Chemical Looping for efficient biomass utilisation (1. Zwischenbericht). http://hdl.handle.net/20.500.12708/40399 ( reposiTUm)
Fleiß, B., Fuchs, J., Müller, S., Hofbauer, H., Weiß, B., Aziaba, K., & Harasek, M. (2021). M&E balances for three different methane pyrolysis processes incl. gas conditioning for underground storage. http://hdl.handle.net/20.500.12708/40523 ( reposiTUm)
Hauser, M. J., Fleiß, B., Fuchs, J., Müller, S., & Hofbauer, H. (2021). Investigations for a (dual) fluidized bed concept for methane pyrolysis. http://hdl.handle.net/20.500.12708/40524 ( reposiTUm)
Fuchs, J., Zerobin, F., Infantino, M., Bertsch, O., Höckner, E., Saxinger, M., Zehetner, E., Dietrich, F., Pirklbauer, J., Penthor, S., Klingler, A., Wolf, M., Hofer, G., Schöny, G., Pröll, T., van Paasen, S., & Hofbauer, H. (2020). Energy efficient CO2 capture and carbon neutral CO2 supply chain for greenhouse fertilization at Wien Simmering (ViennaGreenCO2). http://hdl.handle.net/20.500.12708/40227 ( reposiTUm)
Lehner, M., Medved, A. R., Rosenfeld, D. C., Lindorfer, J., Fuchs, J., Müller, S., Kieberger, N., Rechberger, K., & Stocker, H. (2020). RenewableSteelGases: Einbindung erneuerbarer Energie in die Stahlproduktion zur Energieeffizienzsteigerung und Reduktion der CO2-Emissionen (Endbericht). http://hdl.handle.net/20.500.12708/40228 ( reposiTUm)
Bartik, A., Benedikt, F., Fuchs, J., Hammerschmid, M., Mauerhofer, A. M., Müller, S., & Hofbauer, H. (2020). Zweibett-Wirbelschicht Dampfvergasung von Gärresten mit einer Olivin/Kalk-Mischung als Bettmaterial in der 100 kWth Pilotanlage an der TU Wien. http://hdl.handle.net/20.500.12708/40217 ( reposiTUm)
Fuchs, J., Bartik, A., Mauerhofer, A. M., Müller, S., & Hofbauer, H. (2019). Anlagenkonzept für optimierte Betriebsparameter. http://hdl.handle.net/20.500.12708/34022 ( reposiTUm)
Fuchs, J., Fraberger, A., Elshikh, A. K., Hammerschmid, M., Müller, S., & Hofbauer, H. (2019). Untersuchungen zur Charakterisierung einer Aktivkohle hinsichtlich SO2 Adsorption, NO Reduktion und Selbstentzündung. http://hdl.handle.net/20.500.12708/39773 ( reposiTUm)
Mauerhofer, A. M., Bartik, A., Benedikt, F., Fuchs, J., & Müller, S. (2019). Technical Report of Scientific Research D 6.2 Heat to Fuel system validation. http://hdl.handle.net/20.500.12708/39724 ( reposiTUm)
Bartik, A., Benedikt, F., Fuchs, J., Mauerhofer, A. M., Hammerschmid, M., Müller, S., & Hofbauer, H. (2019). Zweibett-Wirbelschicht Dampfvergasung von Klärschlamm mit einer Olivin/Kalk-Mischung als Bettmaterial in der 100 kWth Pilotanlage an der TU Wien. http://hdl.handle.net/20.500.12708/39877 ( reposiTUm)
Bartik, A., Fuchs, J., Mauerhofer, A. M., Benedikt, F., Müller, S., & Hofbauer, H. (2019). Zweibett-Wirbelschicht Dampfvergasung von Weichholz, einer Hühnermist-Rinde-Mischung und reinem Hühnermist mit aktiviertem Olivin als Bettmaterial in der 100 kWth Pilotanlage an der TU Wien. http://hdl.handle.net/20.500.12708/39751 ( reposiTUm)
Bartik, A., Benedikt, F., Fuchs, J., Mauerhofer, A. M., Müller, S., & Hofbauer, H. (2019). Zweibett-Wirbelschicht Dampfvergasung von Rinde mit Olivin als Bettmaterial in der 100 kWth Pilotanlage an der TU Wien. http://hdl.handle.net/20.500.12708/39752 ( reposiTUm)
Mauerhofer, A. M., Fuchs, J., Schmid, J. C., & Hofbauer, H. (2018). Zweibett-Wirbelschicht Dampfvergasung von Weichholz und einer Hühnermist-Rinde-Stroh-Mischung mit Kalium-Feldspat als Bettmaterial in der 100 kW#_ {th} Pilotanlage an der TU Wien. http://hdl.handle.net/20.500.12708/39659 ( reposiTUm)
Mauerhofer, A. M., Benedikt, F., Fuchs, J., Müller, S., Schmid, J. C., & Hofbauer, H. (2018). CO2 Gasification of Softwood and Rapeseed Cake. http://hdl.handle.net/20.500.12708/39658 ( reposiTUm)
Fuchs, J., Mauerhofer, A. M., & Müller, S. (2018). Daten aus Sorption Enhanced Reforming (Biomassevergasung) für Simulationsmodell. http://hdl.handle.net/20.500.12708/39483 ( reposiTUm)
Benedikt, F., Mauerhofer, A. M., Fuchs, J., Schmid, J. C., & Hofbauer, H. (2018). Gasification of Softwood and Lignin. http://hdl.handle.net/20.500.12708/39469 ( reposiTUm)
Mauerhofer, A. M., Fuchs, J., Benedikt, F., Martin, M., & Schmid, J. C. (2017). Dual Fluidized Bed Steam Gasification of Softwood, Chickenmanure-Bark Blend and Pure Chickenmanure with a 100 kW Pilot Plant at TU Wien and a Mixture of Potassium Feldspar and Calcite as Bed Material. http://hdl.handle.net/20.500.12708/39201 ( reposiTUm)
Benedikt, F., Fuchs, J., & Schmid, J. C. (2017). Dual Fluidized Bed Steam Gasification of Bark and Wood with Calcite/Limestone and Olivine as Bed Material. http://hdl.handle.net/20.500.12708/39205 ( reposiTUm)
Fuchs, J., Schmid, J. C., Müller, S., Benedikt, F., Hammerschmid, M., Kieberger, N., Stocker, H., Hofbauer, H., & Bürgler, T. (2017). Endbericht ERBA II - Optimierung von “Sorption Enhanced Reforming” zur Verbesserung der CO2-Bilanz in der Roheisenerzeugung mittels Biomasse. http://hdl.handle.net/20.500.12708/39295 ( reposiTUm)
Fuchs, J., Mauerhofer, A. M., & Müller, S. (2017). Zweibett-Wirbelschicht-Dampfvergasung mit dem Sorption Enhanced Reforming Prozess und Kalkstein als Bettmaterial. http://hdl.handle.net/20.500.12708/39484 ( reposiTUm)
Hassanli, F., Mauerhofer, A. M., Fuchs, J., & Schmid, J. C. (2017). Influence of Bed Material Mixtures on Dual Fluidized Bed Steam Gasification of Wood (No. 2017-12–28). http://hdl.handle.net/20.500.12708/39371 ( reposiTUm)
Benedikt, F., Fuchs, J., Bickel, A., Schmid, J. C., & Hofbauer, H. (2016). Dual fluidized bed steam gasification of bark with a 100 kW pilot plant at TU Wien and calcite as initial bed material. http://hdl.handle.net/20.500.12708/39161 ( reposiTUm)
Schmid, J. C., Kolbitsch, M., Fuchs, J., Benedikt, F., Müller, S., & Hofbauer, H. (2016). Steam gasification of exhausted olive pomace with a dual fluidized bed pilot plant at TU Wien. http://hdl.handle.net/20.500.12708/38798 ( reposiTUm)
Schmid, J. C., Benedikt, F., Fuchs, J., & Hofbauer, H. (2016). Dual Fluidized Bed Steam Gasification of Rice Husk Pellets with a 100 kW Pilot Plant at TU Wien. http://hdl.handle.net/20.500.12708/38998 ( reposiTUm)
Lechner, T., Schmid, J. C., Fuchs, J., & Hofbauer, H. (2016). Untersuchungen zu Teergehalten und Teertaupunkten bei der Zweibett-Wirbelschicht-Dampfvergasung mit Kalk als Bettmaterial. http://hdl.handle.net/20.500.12708/38946 ( reposiTUm)

Hochschulschriften

Fuchs, J. (2021). Process characteristics of sorption enhanced reforming in an advanced gasification system [Dissertation, Technische Universität Wien]. reposiTUm. https://doi.org/10.34726/hss.2021.39987 ( reposiTUm)