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  4. Hydrothermal carbonization of wheat straw - prediction of product mass yields and degree of carbonization by severity parameter
 
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2016
Journal Article
Title

Hydrothermal carbonization of wheat straw - prediction of product mass yields and degree of carbonization by severity parameter

Abstract
The product yields of hydrothermal carbonization of wheat straw as well as the degree of carbonization are quantified as functions of process parameters by using a severity approach. The process severity was calculated from temperature, retention time, and catalyst concentration. Data gained from batch experiments (190-245 °C, 150-570 min) were used to fit the model parameters. By these models, basing on few selected reaction conditions, a wide range of process conditions can be covered and the yields for the solid, solved organic, and gaseous product phase can be predicted. Moreover, the paper delivers model equations for the prediction of the H/C and O/C ratios for the solid product phase. Such model equations can be used for process optimization and for valid LCA calculations.
Author(s)
Suwelack, Kay
Fraunhofer-Institut für Naturwissenschaftlich-Technische Trendanalysen INT  
Wüst, Dominik
Institute of Agricultural Engineering, Conversion Technology and LCA of Renewable Resources, University of Hohenheim
Zeller, Meret
Institute of Agricultural Engineering, Conversion Technology and LCA of Renewable Resources, University of Hohenheim
Kruse, Andrea
Institute of Agricultural Engineering, Conversion Technology and LCA of Renewable Resources, University of Hohenheim / Institute of Catalysis Research and Technology
Krümpel, Johannes
State Institute of Agricultural Engineering and Bioenergy, University of Hohenheim
Journal
Biomass conversion and biorefinery  
DOI
10.1007/s13399-015-0192-4
Language
English
Fraunhofer-Institut für Naturwissenschaftlich-Technische Trendanalysen INT  
Keyword(s)
  • Hydrothermal Carbonization

  • wheat straw

  • severity parameter

  • model equations

  • mass balance

  • degree of carbonization

  • Hydrochar

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