Analysis of combustion efficiency in a pelletizing furnace

Abstract The objective of this research is to assess how much the improvement in the combustion reaction efficiency can reduce fuel consumption, maintaining the same thermal energy rate provided by the reaction in a pelletizing furnace. The furnace for pelletizing iron ore is a complex thermal machi...

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Main Authors: Rafael Simões Vieira de Moura, Maysa Teixeira Resende, José Antônio da Silva, Julio Cesar Costa Campos
Format: Article
Language:English
Published: Fundação Gorceix
Series:REM: International Engineering Journal
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S2448-167X2016000300317&lng=en&tlng=en
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spelling doaj-239188553290412481e598243511d3ab2020-11-24T21:11:20ZengFundação GorceixREM: International Engineering Journal2448-167X69331732410.1590/0370-44672015690191S2448-167X2016000300317Analysis of combustion efficiency in a pelletizing furnaceRafael Simões Vieira de MouraMaysa Teixeira ResendeJosé Antônio da SilvaJulio Cesar Costa CamposAbstract The objective of this research is to assess how much the improvement in the combustion reaction efficiency can reduce fuel consumption, maintaining the same thermal energy rate provided by the reaction in a pelletizing furnace. The furnace for pelletizing iron ore is a complex thermal machine, in terms of energy balance. It contains recirculation fan gases and constant variations in the process, and the variation of a single process variable can influence numerous changes in operating conditions. This study demonstrated how the main variables related to combustion in the burning zone influence fuel consumption (natural gas) from the furnace of the Usina de Pelotização de Fábrica (owned by VALE S/A), without changing process conditions that affect production quality. Variables were analyzed regarding the velocity and pressure of the fuel in the burners, the temperature of the combustion air and reactant gases, the conversion rate and the stoichiometric air/fuel ratio of the reaction. For the analysis, actual data of the furnace in operation was used, and for the simulation of chemical reactions, the software Gaseq® was used. The study showed that the adjustment of combustion reaction stoichiometry provides a reduction of 9.25% in fuel consumption, representing a savings of US$ 2.6 million per year for the company.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S2448-167X2016000300317&lng=en&tlng=ennatural gascost reductionflamestoichiometryiron oreGaseq®
collection DOAJ
language English
format Article
sources DOAJ
author Rafael Simões Vieira de Moura
Maysa Teixeira Resende
José Antônio da Silva
Julio Cesar Costa Campos
spellingShingle Rafael Simões Vieira de Moura
Maysa Teixeira Resende
José Antônio da Silva
Julio Cesar Costa Campos
Analysis of combustion efficiency in a pelletizing furnace
REM: International Engineering Journal
natural gas
cost reduction
flame
stoichiometry
iron ore
Gaseq®
author_facet Rafael Simões Vieira de Moura
Maysa Teixeira Resende
José Antônio da Silva
Julio Cesar Costa Campos
author_sort Rafael Simões Vieira de Moura
title Analysis of combustion efficiency in a pelletizing furnace
title_short Analysis of combustion efficiency in a pelletizing furnace
title_full Analysis of combustion efficiency in a pelletizing furnace
title_fullStr Analysis of combustion efficiency in a pelletizing furnace
title_full_unstemmed Analysis of combustion efficiency in a pelletizing furnace
title_sort analysis of combustion efficiency in a pelletizing furnace
publisher Fundação Gorceix
series REM: International Engineering Journal
issn 2448-167X
description Abstract The objective of this research is to assess how much the improvement in the combustion reaction efficiency can reduce fuel consumption, maintaining the same thermal energy rate provided by the reaction in a pelletizing furnace. The furnace for pelletizing iron ore is a complex thermal machine, in terms of energy balance. It contains recirculation fan gases and constant variations in the process, and the variation of a single process variable can influence numerous changes in operating conditions. This study demonstrated how the main variables related to combustion in the burning zone influence fuel consumption (natural gas) from the furnace of the Usina de Pelotização de Fábrica (owned by VALE S/A), without changing process conditions that affect production quality. Variables were analyzed regarding the velocity and pressure of the fuel in the burners, the temperature of the combustion air and reactant gases, the conversion rate and the stoichiometric air/fuel ratio of the reaction. For the analysis, actual data of the furnace in operation was used, and for the simulation of chemical reactions, the software Gaseq® was used. The study showed that the adjustment of combustion reaction stoichiometry provides a reduction of 9.25% in fuel consumption, representing a savings of US$ 2.6 million per year for the company.
topic natural gas
cost reduction
flame
stoichiometry
iron ore
Gaseq®
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S2448-167X2016000300317&lng=en&tlng=en
work_keys_str_mv AT rafaelsimoesvieirademoura analysisofcombustionefficiencyinapelletizingfurnace
AT maysateixeiraresende analysisofcombustionefficiencyinapelletizingfurnace
AT joseantoniodasilva analysisofcombustionefficiencyinapelletizingfurnace
AT juliocesarcostacampos analysisofcombustionefficiencyinapelletizingfurnace
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