Investigation on the Chemical and Thermal Behavior of Recycling Agglomerates from EAF by-Products

Author:

Willms ThomasORCID,Echterhof ThomasORCID,Steinlechner StefanORCID,Aula Matti,Abdelrahim AhmedORCID,Fabritius TimoORCID,Mombelli DavideORCID,Mapelli CarloORCID,Preiss Stefan

Abstract

In addition to the blast furnace converter route, electric steel production in the electric arc furnace (EAF) is one of the two main production routes for crude steel. In 2019, the global share of crude steel produced via the electric steel route was 28%, which in numbers is 517 million metric tons of crude steel. The production and processing of steel leads to the output of a variety of by-products, such as dusts, fines, sludges and scales. At the moment, 10–67% of these by-products are landfilled and not recycled. These by-products contain metal oxides and minerals including iron oxide, zinc oxide, magnesia or alumina. Apart from the wasted valuable materials, the restriction of landfill space and stricter environmental laws are additional motivations to avoid landfill. The aim of the Fines2EAF project, funded by the European Research Fund for Coal and Steel, is to develop a low-cost and flexible solution for the recycling of fines, dusts, slags and scales from electric steel production. During this project, an easy, on-site solution for the agglomeration of fine by-products from steel production has to be developed from lab scale to pilot production for industrial tests in steel plants. The solution is based on the stamp press as the central element of the agglomeration process. The stamp press provides the benefit of being easily adapted to different raw materials and different pressing parameters, such as pressing-force and -speed, or mold geometry. Further benefits are that the stamp press process requires less binding material than the pelletizing process, and that no drying process is required as is the case with the pelletizing process. Before advancing the agglomeration of by-products via stamp press to an industrial scale, different material recipes are produced in lab-scale experiments and the finished agglomerates are tested for their use as secondary raw materials in the EAF. Therefore, the tests focus on the chemical and thermal behavior of the agglomerates. Chemical behavior, volatilization and reduction behavior of the agglomerates were investigated by differential thermogravimetric analysis combined with mass spectroscopy (TGA-MS). In addition, two melts with different agglomerates are carried out in a technical-scale electric arc furnace to increase the sample size.

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference28 articles.

1. Control of Slag Quality for Utilisation in the Construction Industry (SLACON): Final Report;Algermissen,2017

2. Upgrading and Utilisation of Residual Iron Oxide Materials for Hot Metal Production (URIOM): Final Report;Stubbe,2013

3. Briquetting of Self-Reducing Blendings of Waste Iron Oxide Mixtures: Final Report;Derungs,2002

4. Sintering as the method of utilization of steelmaking dusts with a high content of zinc oxides;Wozniacki;Hutnik-WH,2014

5. Sustainability in Action: Recovery of Zinc from EAF Dust in the Steel Industry, 2015http://www.icz.org.br/upfiles/arquivos/apresentacoes/intergalva-2015/5-2-Stewart.pdf

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