Kinetic Modeling of Biomass Steam Gasification System for Hydrogen Production with CO2 Adsorption

Due to energy and environmental issues, hydrogen becomes a more attractive clean fuel. There is high interest to produce hydrogen from biomass in view of sustainability. The thermo chemical process i.e. gasification is highlighted for hydrogen production. This paper d...

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Main Authors: Inayat, Abrar, Ahmad, Murni M, Abdul Mutalib, M I, Yunus, Mohd Khairuddin
格式: Conference or Workshop Item
语言:English
出版: 2009
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在线阅读:http://scholars.utp.edu.my/id/eprint/3052/1/Kinetic_modelling_of_biomass_steam_gasification_system_for_hydrogen_production_with_CO2_adsorption_%28TECHPOS_2009%29.pdf
http://scholars.utp.edu.my/id/eprint/3052/
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spelling oai:scholars.utp.edu.my:30522023-01-04T02:30:09Z http://scholars.utp.edu.my/id/eprint/3052/ Kinetic Modeling of Biomass Steam Gasification System for Hydrogen Production with CO2 Adsorption Inayat, Abrar Ahmad, Murni M Abdul Mutalib, M I Yunus, Mohd Khairuddin TP Chemical technology Due to energy and environmental issues, hydrogen becomes a more attractive clean fuel. There is high interest to produce hydrogen from biomass in view of sustainability. The thermo chemical process i.e. gasification is highlighted for hydrogen production. This paper discusses the mathematical modeling of hydrogen production through steam gasification with calcium oxide as sorbent in one gasifier. The model framework consists of kinetics model based on chemical reactions with few assumptions using MATLAB. This work investigates the influence of the temperature, steam/biomass ratio and sorbent/biomass ratio on the hydrogen and product gas composition. The importance of different reactions involved in the system is also discussed. The model helps to predict the product gas composition and hydrogen gas mole fraction from biomass. It is observed that at 1000 K temperature,3.0 steam/biomass ratio and 1.0 sorbent/biomass ratio maximum hydrogen mole fraction obtained in the product gas i.e. 0.82. At sorbent /biomass 1.52, purity of hydrogen is increased to 0.98 mole fraction with all CO2 present in system absorbed. 2009-12-14 Conference or Workshop Item PeerReviewed application/pdf en http://scholars.utp.edu.my/id/eprint/3052/1/Kinetic_modelling_of_biomass_steam_gasification_system_for_hydrogen_production_with_CO2_adsorption_%28TECHPOS_2009%29.pdf Inayat, Abrar and Ahmad, Murni M and Abdul Mutalib, M I and Yunus, Mohd Khairuddin (2009) Kinetic Modeling of Biomass Steam Gasification System for Hydrogen Production with CO2 Adsorption. In: International Conference for Technical Postgraduates (TECHPOS 2009), 14-15 December 2009, Kula Lumpur, Malaysia .
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Institutional Repository
url_provider http://eprints.utp.edu.my/
language English
topic TP Chemical technology
spellingShingle TP Chemical technology
Inayat, Abrar
Ahmad, Murni M
Abdul Mutalib, M I
Yunus, Mohd Khairuddin
Kinetic Modeling of Biomass Steam Gasification System for Hydrogen Production with CO2 Adsorption
description Due to energy and environmental issues, hydrogen becomes a more attractive clean fuel. There is high interest to produce hydrogen from biomass in view of sustainability. The thermo chemical process i.e. gasification is highlighted for hydrogen production. This paper discusses the mathematical modeling of hydrogen production through steam gasification with calcium oxide as sorbent in one gasifier. The model framework consists of kinetics model based on chemical reactions with few assumptions using MATLAB. This work investigates the influence of the temperature, steam/biomass ratio and sorbent/biomass ratio on the hydrogen and product gas composition. The importance of different reactions involved in the system is also discussed. The model helps to predict the product gas composition and hydrogen gas mole fraction from biomass. It is observed that at 1000 K temperature,3.0 steam/biomass ratio and 1.0 sorbent/biomass ratio maximum hydrogen mole fraction obtained in the product gas i.e. 0.82. At sorbent /biomass 1.52, purity of hydrogen is increased to 0.98 mole fraction with all CO2 present in system absorbed.
format Conference or Workshop Item
author Inayat, Abrar
Ahmad, Murni M
Abdul Mutalib, M I
Yunus, Mohd Khairuddin
author_facet Inayat, Abrar
Ahmad, Murni M
Abdul Mutalib, M I
Yunus, Mohd Khairuddin
author_sort Inayat, Abrar
title Kinetic Modeling of Biomass Steam Gasification System for Hydrogen Production with CO2 Adsorption
title_short Kinetic Modeling of Biomass Steam Gasification System for Hydrogen Production with CO2 Adsorption
title_full Kinetic Modeling of Biomass Steam Gasification System for Hydrogen Production with CO2 Adsorption
title_fullStr Kinetic Modeling of Biomass Steam Gasification System for Hydrogen Production with CO2 Adsorption
title_full_unstemmed Kinetic Modeling of Biomass Steam Gasification System for Hydrogen Production with CO2 Adsorption
title_sort kinetic modeling of biomass steam gasification system for hydrogen production with co2 adsorption
publishDate 2009
url http://scholars.utp.edu.my/id/eprint/3052/1/Kinetic_modelling_of_biomass_steam_gasification_system_for_hydrogen_production_with_CO2_adsorption_%28TECHPOS_2009%29.pdf
http://scholars.utp.edu.my/id/eprint/3052/
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score 13.250246