Campus Vitória

Desde a criação da Escola de Aprendizes Artífices do Espírito Santo, em 1909, até a transformação em Instituto Federal do Espírito Santo, a instituição é referência em educação na sociedade capixaba.

Resultado da união das unidades do Centro Federal de Educação Tecnológica e das Escolas Agrotécnicas Federais, em 2008, o Ifes promove educação profissional pública de excelência, integrando ensino, pesquisa e extensão, para a construção de uma sociedade democrática, justa e sustentável.

O Ifes - Campus Vitória surge com o objetivo de suprir uma demanda regional de formação profissional, dar suporte aos arranjos produtivos locais e para a difusão do conhecimento científico e tecnológico.

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    Trabalho apresentado em evento
    Use of CaO-Al₂O₃ synthetic slag on EAF tapping for steel desulfurization
    (Association for Iron & Steel Technology, 2023-03) Renato, Lucas da Silva; Souza, Raphael Mariano de; Dagostini, Víctor dos Santos; Vieira, Estéfano Aparecido; Grillo, Felipe Fardin; de Paola, Jean Carlo Camasmie; Oliveira, José Roberto de
    Steel desulfurization is usually performed by CaO-Al₂O₃-based top slags. However, in the steelmaking process at a steel mill in the city of Cariacica-ES, Brazil, deoxidation is carried out on tapping with the addition of ferro-silicon-manganese and silicon carbide, and desulfurization is carried out on ladle furnace with the addition of lime and calcium carbide. The present work aims to change this process by adding a CaO-Al₂O₃ system slag on the EAF steel tapping, so that the desulfurization occurs already in this step, thus enabling the CaC₂ economy in the ladle furnace. Three different lime/alumina briquettes ratio were determined using the software ThermoCalc software, where the CaO activity, liquid slag ratio and viscosity were the main properties analyzed. Then, the desulfurization yields of these heats were compared to the conventional route used at this steelmaking process. The influence of additions and of the slag carry-over on desulfurization efficiency were analyzed by correlation charts and a mathematical model developed using the software Minitab 19. It was found that the slag carry-over from the EAF impairs the desulfurization, causing sulfur reversion from tapping until the ladle furnace arrival, and decreasing the desulfurization rate (desulfurization kinetics) on the ladle furnace treatment by promoting high equilibrium sulfur content, close to the real reached value. The most efficient slags were the ones with the greatest calcium oxide activities, which is in line with the Steel Desulfurization Factor.