Evaluation Of The Influence Of Electric Arc Furnace Dust Content On The Self-reduction Of Briquettes Produced With Elephant Grass Biomass

Associacao Brasileira de Metalurgia,  Materiais e Mineracao
Giulio Antunes de Medeiros Rayla de Souza Caldas Leonardo Martins Silva Giselle de Mattos Araújo
Organization:
Associacao Brasileira de Metalurgia, Materiais e Mineracao
Pages:
10
File Size:
981 KB
Publication Date:
Oct 1, 2019

Abstract

To analyze the direct reduction of self-reducting briquettes producted with different electric arc furnace dust contents, three sets of homogeneous mixtures were produced with elephant grass biomass, iron ore, cement and furnace dust in increasing levels, which were submitted to thermogravimetric tests in muffle furnace and TGA furnace at variable temperatures and times. The curves of degree of reduction were obtained and the reduced briquettes were analyzed by scanning electron microscopy (SEM) and X-ray diffraction (XRD). The results showed that the reducibility of the agglomerates is diminished by the increase of furnace dust, with variations of this result at higher temperatures. The observed microstructures were spherical particles, porous structure or whiskers. Based on XRD results, it was considered probable that the decrease of the degree of reduction with the increase of furnace dust content is related to the reaction between hematite and zincite, which is expected to be controlled by zinc diffusion.
Citation

APA: Giulio Antunes de Medeiros Rayla de Souza Caldas Leonardo Martins Silva Giselle de Mattos Araújo  (2019)  Evaluation Of The Influence Of Electric Arc Furnace Dust Content On The Self-reduction Of Briquettes Produced With Elephant Grass Biomass

MLA: Giulio Antunes de Medeiros Rayla de Souza Caldas Leonardo Martins Silva Giselle de Mattos Araújo Evaluation Of The Influence Of Electric Arc Furnace Dust Content On The Self-reduction Of Briquettes Produced With Elephant Grass Biomass. Associacao Brasileira de Metalurgia, Materiais e Mineracao, 2019.

Export
Purchase this Article for $25.00

Create a Guest account to purchase this file
- or -
Log in to your existing Guest account