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Coupling Power Generation with Syngas-Based Chemical Synthesis

A Process Chain Evaluation from a Power Plant Viewpoint

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  • © 2019

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  • Publication in the field of technical sciences
  • Includes supplementary material: sn.pub/extras
  • 1487 Accesses

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Table of contents (7 chapters)

Keywords

About this book

Coupling power generation with syngas-based chemical synthesis according to the so-called ‘Polygeneration-Annex’ concept offers economic and technical benefits. Clemens Forman assesses the integration of incoming streams by the Annex plant from a power plant point of view across its full load range. Analyses are done by load-dependent flowsheet simulation. The pulverized lignite combustion power plant process is covered by two generic technical states: an existing 650 MW(el) power plant and a near future 1,100 MW(el) power plant with duo block design and dry lignite co-firing. Modeling comprises both the flue gas path and the water-steam circuit. Appropriate stream interfaces are identified and determined depending on the load status. The technical feasibility of integration can be proven.

Authors and Affiliations

  • Freiberg, Germany

    Clemens Forman

About the author

Clemens Forman worked as a research associate at the Institute of Energy Process Engineering and Chemical Engineering at TU Bergakademie Freiberg in the field of power plant technologies.

Bibliographic Information

  • Book Title: Coupling Power Generation with Syngas-Based Chemical Synthesis

  • Book Subtitle: A Process Chain Evaluation from a Power Plant Viewpoint

  • Authors: Clemens Forman

  • DOI: https://doi.org/10.1007/978-3-658-22609-1

  • Publisher: Springer Vieweg Wiesbaden

  • eBook Packages: Engineering, Engineering (R0)

  • Copyright Information: Springer Fachmedien Wiesbaden GmbH, part of Springer Nature 2019

  • Softcover ISBN: 978-3-658-22608-4Published: 25 June 2018

  • eBook ISBN: 978-3-658-22609-1Published: 13 June 2018

  • Edition Number: 1

  • Number of Pages: XXV, 147

  • Number of Illustrations: 36 b/w illustrations, 10 illustrations in colour

  • Topics: Energy Systems, Engineering Thermodynamics, Heat and Mass Transfer, Mechanical Engineering

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