A Kinetic Study of CO2 and Steam Gasification of Char from Lignin Produced in the SEW Process
The reaction kinetics of gasification are important for the design of gasifiers using biomass feedstocks, such as lignin, produced in biorefinery processes. Condensed and uncondensed lignin samples used in the present study were prepared using the SEW (SO2-ethanol-water) fractionation process applie...
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North Carolina State University
2014-04-01
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doaj-8ea394eff3fc43749720b080c4e118602020-11-24T20:50:41ZengNorth Carolina State UniversityBioResources1930-21261930-21262014-04-01923052306310.15376/biores.9.2.3052-3063A Kinetic Study of CO2 and Steam Gasification of Char from Lignin Produced in the SEW ProcessAmirfarrokh Farzaneh0Tobias Richards1Evangelos Sklavounos2Adriaan van Heiningen3School of Engineering, University of Borås, SE 501 90 Borås, SwedenUniversity of BoråsSchool of Chemical Technology, Aalto University, FI-02150, Espoo, FinlandSchool of Chemical Technology, Aalto University, FI-02150, Espoo, FinlandThe reaction kinetics of gasification are important for the design of gasifiers using biomass feedstocks, such as lignin, produced in biorefinery processes. Condensed and uncondensed lignin samples used in the present study were prepared using the SEW (SO2-ethanol-water) fractionation process applied to spruce wood chips: the dissolved lignin is precipitated during the recovery of SO2 and ethanol from the spent fractionation liquor. The gasification of char made from condensed and uncondensed SEW lignin was investigated using thermogravimetric analysis (TGA) at atmospheric pressure using either CO2 or steam. The main aim of this study was to quantify the reaction rate during the gasification process, which was found to be best described as zero-order. All experiments were performed at constant temperatures between 700 and 1050 °C to obtain the necessary information for describing the reaction rate equation in an Arrhenius form; the heating rate was 20 °C/min for both samples. The experiments led to almost similar results for both samples. The activation energies of CO2 gasification were approximately 160 kJ/mol and 170 kJ/mol for uncondensed and condensed lignin char, respectively. The activation energies of steam gasification were approximately 90 kJ/mol and 100 kJ/mol for uncondensed and condensed lignin char, respectively.http://ojs.cnr.ncsu.edu/index.php/BioRes/article/view/BioRes_09_2_3052_Farzaneh_Kinetic_Study_Steam_GasificationSulfur dioxide-ethanol-water (SEW) fractionationKineticsCO2 and steam gasificationLigninThermogravimetric analysis |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Amirfarrokh Farzaneh Tobias Richards Evangelos Sklavounos Adriaan van Heiningen |
spellingShingle |
Amirfarrokh Farzaneh Tobias Richards Evangelos Sklavounos Adriaan van Heiningen A Kinetic Study of CO2 and Steam Gasification of Char from Lignin Produced in the SEW Process BioResources Sulfur dioxide-ethanol-water (SEW) fractionation Kinetics CO2 and steam gasification Lignin Thermogravimetric analysis |
author_facet |
Amirfarrokh Farzaneh Tobias Richards Evangelos Sklavounos Adriaan van Heiningen |
author_sort |
Amirfarrokh Farzaneh |
title |
A Kinetic Study of CO2 and Steam Gasification of Char from Lignin Produced in the SEW Process |
title_short |
A Kinetic Study of CO2 and Steam Gasification of Char from Lignin Produced in the SEW Process |
title_full |
A Kinetic Study of CO2 and Steam Gasification of Char from Lignin Produced in the SEW Process |
title_fullStr |
A Kinetic Study of CO2 and Steam Gasification of Char from Lignin Produced in the SEW Process |
title_full_unstemmed |
A Kinetic Study of CO2 and Steam Gasification of Char from Lignin Produced in the SEW Process |
title_sort |
kinetic study of co2 and steam gasification of char from lignin produced in the sew process |
publisher |
North Carolina State University |
series |
BioResources |
issn |
1930-2126 1930-2126 |
publishDate |
2014-04-01 |
description |
The reaction kinetics of gasification are important for the design of gasifiers using biomass feedstocks, such as lignin, produced in biorefinery processes. Condensed and uncondensed lignin samples used in the present study were prepared using the SEW (SO2-ethanol-water) fractionation process applied to spruce wood chips: the dissolved lignin is precipitated during the recovery of SO2 and ethanol from the spent fractionation liquor. The gasification of char made from condensed and uncondensed SEW lignin was investigated using thermogravimetric analysis (TGA) at atmospheric pressure using either CO2 or steam. The main aim of this study was to quantify the reaction rate during the gasification process, which was found to be best described as zero-order. All experiments were performed at constant temperatures between 700 and 1050 °C to obtain the necessary information for describing the reaction rate equation in an Arrhenius form; the heating rate was 20 °C/min for both samples. The experiments led to almost similar results for both samples. The activation energies of CO2 gasification were approximately 160 kJ/mol and 170 kJ/mol for uncondensed and condensed lignin char, respectively. The activation energies of steam gasification were approximately 90 kJ/mol and 100 kJ/mol for uncondensed and condensed lignin char, respectively. |
topic |
Sulfur dioxide-ethanol-water (SEW) fractionation Kinetics CO2 and steam gasification Lignin Thermogravimetric analysis |
url |
http://ojs.cnr.ncsu.edu/index.php/BioRes/article/view/BioRes_09_2_3052_Farzaneh_Kinetic_Study_Steam_Gasification |
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