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16
Utilising Thermodynamic Equilibrium Calculations to Model Potassium Capture by Aluminosilicate Additives in Biomass Combustion Plants. Fuel 340, 2023, 127591 mehr… -
15
Impact of Coal Fly Ash Addition on Combustion Aerosols (PM2.5) in Pilot- and Full-Scale Pulverized Wood Combustion: A Comparative Study. Energy & Fuels, 2022 mehr… -
14
Modelling the Capture of Potassium by Solid Al-Si Particles at Pulverised Fuel Conditions. Fuel (328 / 125321), 2022 mehr… -
13
Influence of additive surface area degradation on fine particle formation during biomass pulverised-fuel combustion. Fuel 338 (127247), 2022 mehr… -
12
Utilising Thermodynamic Equilibrium Calculations to Model Potassium Capture by Additives in Biomass Combustion Plants. Proc. 28th International Conference on Impacts of Fuel Quality on Power Production and the Environment, 2022 mehr… -
11
Utilising Thermodynamic Equilibrium Calculations to Model Potassium Capture by Additives in Biomass Combustion Plants. Proc. 28th International Conference on Impacts of Fuel Quality on Power Production and the Environment, 2022 mehr… -
10
Comparison of Coal Fly Ash Injection Techniques on Combustion Aerosols in a Full-Scale Boiler Firing Wood. International Conference on Impacts of Fuel Quality on Power Production and the Environment, 2022 mehr… -
9
On the Ash Deposition Behavior and Fine Particle Formation When Utilizing Biomass Together with Coal Fly Ash in Pilot- and Full-Scale. Proc. Impacts of Fuel Quality on Power Production, the 28th International Conference, 2022 mehr… -
8
Modellierung des Einsatzes von Additiven zur Feinstaubminderung in Biomasse-Staubfeuerungskesseln. 53. Kraftwerkstechnisches Kolloquium 2021 mehr… -
7
Fuel-specific devolatilization parameters for detailed comparison of pulverized biomass fuels. Fuel 286, 2021, 119309 mehr… -
6
The Biofficiency Project Part 2: A Blueprint Design for the Next Generation of Biomass-Fired Cogeneration Plants. VGB PowerTech 8, 2020 mehr… -
5
The Biofficiency Project Part 1: Handling ash-related challenges in biomass-fired cogeneration plants. VGB PowerTech 7, 2020 mehr… -
4
Biofficiency: Towards the Next Generation of Biomass-fired Combined Heat and Power Plants. 51. Kraftwerkstechnisches Kolloquium, 2019 mehr… -
3
Modeling the Combustion of Different Biomasses in a 200 kW Pulverised Fuel Test Rig. 27th European Biomass Conference and Exhibition, 2019EUBCE mehr… -
2
CFD-Modellierung des Abbrennverhaltens verschiedener Biomassen in einer 200 kW Staubfeuerungsanlage. 29. Deutscher Flammentag, 2019 mehr… -
1
The H2020 Biofficiency project – A holistic approach towards ash-related problems in case of combined heat and power generation from biomass. VGB PowerTech Journal 10, 2018 mehr…

de Riese, Thorben, M.Sc.
Lehrstuhl für Energiesysteme
Boltzmannstrasse 15
85748 Garching
Zimmer: 3726
Telefon: (089) 289 16352
Fax: (089) 289 16352
E-Mail: thorben.deriese@tum.de
Sprechstunde
nach Vereinbarung
Aufgaben
- Vorlesung: CFD-Simulation thermischer Prozesse
- Vorlesung: Nachhaltige Energiesysteme, Seminar zu Nachhaltige Energiesysteme
Forschungsschwerpunkte
- EU-Projekt: Biofficiency