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Friedrich-Alexander-Universität Chair of Energy Process Engineering
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Friedrich-Alexander-Universität Chair of Energy Process Engineering
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  6. BMWK-project SyntheseREADY

BMWK-project SyntheseREADY

In page navigation: Startpage of the Chair of Energy Process Engineering
  • Chair
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    • Research topics Prof. Karl
      • Thermochemical Conversion and Chemical Energy Storage
      • Thermal Storage Systems and Carbon Capture
      • Energy Systems and Energy Economics
        • BMBF-Project: Klimapakt2030plus
        • BMWi-project ESM-Regio
        • BMWi-project: Kläffizient
        • BMWK project: KLÄFFIZIENTER
        • BMWK-project SyntheseREADY
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BMWK-project SyntheseREADY

BMWK-project SyntheseREADY – Development of flexible combined-heat-and-power plants for sector coupling

PtJ

Projektträger Jülich

Bundesministerium für Wirtschaft und Klimaschutz

energetische-biomassenutzung

Förderprogramm Energetische Biomassenutzung

ReGaWatt GmbH

prosio engineering GmbH

The aim of the project is the development of improved combined-heat-and-power (CHP) biomass plants by researching the option to produce green renewable gas (substitute natural gas, SNG) in addition to their current products: domestic heat and electricity. To achieve this goal, a fixed bed gasification process is modified in order to obtain a suitable synthesis gas for further downstream applications. This necessitates the implementation of an efficient oxyfuel/steam gasification processes which ought to be flexible to allow intermittent plant operation. Consequently, a key focus of this project is the development of an improved, intelligent, flexible, demand-oriented process control and load prediction system. This results in modern CHP plants which additionally serve a systemic purpose with regard to sector integration and energy storage. The SyntheseREADY project demonstrates the overall technical concept in pre-pilot scale including the intelligent process control system, further adding a profound techno-economic assessment. The key benefits of the proposed approach are the high potential and especially its very short time-to-market.

Experimental counterflow gasifier from REGA at the Senden site
Experimental counterflow gasifier from REGA at the Senden site

 

Contact:

Steffen Leimbach

Steffen Leimbach, M. Sc.

Department of Chemical and Biological Engineering
Lehrstuhl für Energieverfahrenstechnik

  • Phone number: 09115302-99059
  • Email: steffen.leimbach@fau.de

Friedrich-Alexander-Universität
Erlangen-Nürnberg

Schlossplatz 4
91054 Erlangen
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