Reaction rate and product morphology in carbon composite iron ore pellets with and without Portland cement


Autoria(s): SANTOS, D. M. dos; MOURAO, M. B.; TAKANO, C.
Contribuinte(s)

UNIVERSIDADE DE SÃO PAULO

Data(s)

18/10/2012

18/10/2012

2010

Resumo

The aim of this work is to study the reaction rate and the morphology of intermediate reaction products during iron ore reduction when iron ore and carbonaceous materials are agglomerated together with or without Portland cement. The reaction was performed at high temperatures, and used small size samples in order to minimise heat transfer constraints. Coke breeze and pure graphite were the carbonaceous materials employed. Portland cement was applied as a binder, and pellet diameters were in the range 5.6-6.5 mm. The experimental technique involved the measurement of the pellet weight loss, as well as the interruption of the reaction at different stages, in order to submit the partially reduced pellet to scanning electron microscopy. The experimental temperature was in the range 1423-1623 K, and the total reaction time varied from 240 to 1200 s. It was observed that above 1523 K the formation of liquid slag occurred inside the pellets, which partially dissolved iron oxides. The apparent activation energies obtained were 255 kJ mol(-1) for coke breeze containing pellets, and 230 kJ mol(-1) for those pellets containing graphite. It was possible to avoid heat transfer control of the reaction rate up to 1523 K by employing small composite pellets.

Fapesp

CNPq

Identificador

IRONMAKING & STEELMAKING, v.37, n.5, p.334-340, 2010

0301-9233

http://producao.usp.br/handle/BDPI/18411

10.1179/030192310X12683045805982

http://dx.doi.org/10.1179/030192310X12683045805982

Idioma(s)

eng

Publicador

MANEY PUBLISHING

Relação

Ironmaking & Steelmaking

Direitos

restrictedAccess

Copyright MANEY PUBLISHING

Palavras-Chave #Carbon composite pellets #Carbothermic reduction #Portland cement #HEARTH FURNACE PROCESS #REDUCTION KINETICS #COAL CHAR #PART II #HEMATITE #OXIDES #VOLATILES #Metallurgy & Metallurgical Engineering
Tipo

article

original article

publishedVersion