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On a Numerical Model for Gasification of Biomass Materials

نویسنده:
مهدی واعظی
,
محمد پسندیده فرد
,
محمد مقیمان
,
Mahdi Vaezi
,
Mohammad Passandideh-Fard
,
Mohammad Moghiman
سال
: 2007
چکیده: In this paper, a thermochemical equilibrium model is used to predict the performance of a downdraft gasifier. Numerical results are shown to be in good agreement with those of the experiments. Different biomass materials are tested using the model and forest residual is shown to be the most energetic one. For this material, the gasification temperature, syngas composition and calorific value are calculated. The effects of moisture content, air/fuel ratio, air inlet temperature and steam/fuel ratio are also investigated. The air inlet temperature is found to be the only way to increase the gas calorific value and cold gas efficiency. The steam/fuel ratio, on the other hand, plays a key rule in controlling the gasification temperature and H2/CO ratio.
یو آر آی: http://libsearch.um.ac.ir:80/fum/handle/fum/3374393
کلیدواژه(گان): Renewable Energy,Biomass,Gasification,Thermochemical Equilibrium,Mathematical Modeling
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    On a Numerical Model for Gasification of Biomass Materials

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contributor authorمهدی واعظیen
contributor authorمحمد پسندیده فردen
contributor authorمحمد مقیمانen
contributor authorMahdi Vaezifa
contributor authorMohammad Passandideh-Fardfa
contributor authorMohammad Moghimanfa
date accessioned2020-06-06T13:54:41Z
date available2020-06-06T13:54:41Z
date copyright12/29/2007
date issued2007
identifier urihttp://libsearch.um.ac.ir:80/fum/handle/fum/3374393?locale-attribute=fa
description abstractIn this paper, a thermochemical equilibrium model is used to predict the performance of a downdraft gasifier. Numerical results are shown to be in good agreement with those of the experiments. Different biomass materials are tested using the model and forest residual is shown to be the most energetic one. For this material, the gasification temperature, syngas composition and calorific value are calculated. The effects of moisture content, air/fuel ratio, air inlet temperature and steam/fuel ratio are also investigated. The air inlet temperature is found to be the only way to increase the gas calorific value and cold gas efficiency. The steam/fuel ratio, on the other hand, plays a key rule in controlling the gasification temperature and H2/CO ratio.en
languageEnglish
titleOn a Numerical Model for Gasification of Biomass Materialsen
typeConference Paper
contenttypeExternal Fulltext
subject keywordsRenewable Energyen
subject keywordsBiomassen
subject keywordsGasificationen
subject keywordsThermochemical Equilibriumen
subject keywordsMathematical Modelingen
identifier linkhttps://profdoc.um.ac.ir/paper-abstract-1012028.html
conference title1st WSEAS International Conference on COMPUTATIONAL CHEMISTRYen
conference locationCairofa
identifier articleid1012028
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