Modifying the properties of steel slag by iron tailings at high temperature
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摘要: 研究了鐵尾礦高溫改性處理對鋼渣體積穩定性和膠凝性能的影響,結合X射線衍射分析、掃描電鏡觀察和能譜分析等測試方法,對改性鋼渣的礦物組成和微觀形貌進行了分析.發現鐵尾礦的高溫改性顯著降低了鋼渣中游離氧化鈣(f-CaO)的含量,提高了鋼渣膠凝性能.鐵尾礦摻加質量分數為20%和處理溫度為1250℃時,鋼渣中f-CaO的質量分數由4.84%降低至1.82%,降幅達到62.4%,28d活性指數比原始鋼渣體系提高5.6%.鐵尾礦摻量由10%增加至30%時,改性鋼渣中相繼出現鎂薔薇輝石、鎂黃長石和鈣鎂輝石等硅酸鹽礦相.高溫改性過程促使RO相分解,RO相中的FeO轉化為磁鐵礦相(Fe3O4).Abstract: High-temperature modification by iron tailings was performed to study its influence on the volume stability and cementitious properties of steel slag. The mineral constituents and microstructure of steel slag after the high-temperature modification were analyzed via X-ray diffraction (XRD), scanning electronic microscopy (SEM) and energy dispersive spectrometry (EDS). It is found that the content of f-CaO obviously decreases and the cementitious properties of steel slag improve through the high-temperature modification. Compared with raw steel slag, the mass fraction of f-CaO in steel slag decreases from 4.84% to 1.82% after modification with 20% iron tailings at 1 250℃ and the activity index increases up to 5.6% after 28 d. With an increase in the mass fraction of iron tailings from 10% to 30%, silicate mineral phases such as manganolite, akermanite and calcium magnesium pyroxene form in the modified steel slag. The high-temperature modification promotes the decomposition of RO phase, in which FeO transforms to magnetite (Fe3O4) simultaneously.
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Key words:
- slag cement /
- tailings /
- modification /
- cementitious properties
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