Microwave-induced modifications in electric arc furnace slag: An attempt to enhance aqueous dissolution

被引:0
作者
Kurtulus, Recep [1 ,2 ]
Kurtulus, Cansu [1 ,3 ]
Khoei, Mahtab Akbarzadeh [1 ]
Cantaluppi, Marco [1 ]
Yliniemi, Juho [1 ]
机构
[1] Univ Oulu, Fiber & Particle Engn Res Unit, POB 4300, Oulu 90014, Finland
[2] Afyon Kocatepe Univ, Fac Engn, Dept Mat Sci & Engn, Merkez, Turkiye
[3] Afyon Kocatepe Univ, Fac Engn, Dept Chem Engn, Merkez, Turkiye
关键词
Electric arc furnace slag; Microwave irradiation; Microwave roasting; Dissolution; Surface chemistry; Resource recovery; DIELECTRIC-CONSTANT; STEEL SLAG; LEACHING BEHAVIOR; CO2; SEQUESTRATION; IRRADIATION; MECHANISM; MINERALS; CEMENT;
D O I
10.1016/j.hydromet.2025.106475
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
Electric arc furnace slag (EAFS) is produced in large amounts during steel manufacturing and can pose ecological hazards when disposed of in nature. Its heterogeneity, intricate mineralogy, and low solubility restrict its applicability in numerous fields, such as cementitious binders, resource recovery, and mineralization. This study investigated three different microwave irradiation techniques-direct (MWD), roasting with NaOH (MWR), and solution (MWS)-to modify the EAFS and exceed the current boundaries. The former involved direct exposure of EAFS (D90: <30 mu m) to microwaves, while the latter included a mixed of EAFS and NaOH, followed by microwave roasting. Both microwave-irradiated samples were later dissolved via stirring in aqueous conditions at a 1:100 g/mL ratio. In contrast, MWS comprised dissolution of EAFS in water under microwave irradiation in a closed vessel. The elemental releases were then analyzed using an inductively coupled plasma-optical emission spectrometer. Structural, surface chemistry, and morphology examinations were also conducted. The results indicated that the structural alterations directly influenced release of Al, leading to a dissolution extent of 25 % for MWR, in contrast to the reference, which attained only 10 %. The release of Si was only achieved using MWR, reaching 3 %. The release of Ca was prominent in the MWS, achieving the highest concentration relative to the others and exhibiting 50 % enhancement. The findings obtained by surface and solution chemistry and micro-structural images supported the differences in elemental releases among sample series following microwave irradiation. In conclusion, this study demonstrated the promising potential of microwave irradiation to enhance the dissolution of EAFS, providing more insights into its appropriate applications and valuable reuse.
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页数:14
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