Corrosion Behavior of MgO-C Refractory in the Electric Arc Furnace that Entirely Uses Direct Reduced Iron as Raw Materials
Author:
Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-50176-0_12
Reference15 articles.
1. Wang RR, Zhao YQ, Babich A, Senk D, Fan XY (2021) Hydrogen direct reduction (H-DR) in steel industry-An overview of challenges and opportunities. J Clean Prod 329:129797
2. Pimm AJ, Cockerill TT, Gale WF (2021) Energy system requirements of fossil-free steelmaking using hydrogen direct reduction. J Clean Prod 312:127665
3. Oh MK, Park JH (2021) Effect of fluorspar on the interfacial reaction between electric arc furnace slag and magnesia refractory: Competitive corrosion-protection mechanism of magnesiowüstite layer. Ceram Int 47:20387–20398
4. Yilmaz C, Turek T (2017) Modeling and simulation of the use of direct reduced iron in a blast furnace to reduce carbon dioxide emissions. J Clean Prod 64:1519–1530
5. Heo J, Park JH (2022) Interfacial reactions between magnesia refractory and electric arc furnace (EAF) slag with use of direct reduced iron (DRI) as raw material. Ceram Int 48:4526–4538
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