<p>As a by-product of the steelmaking process, steel slag has a large stock and poor stability, which has led to a gradual decline in its utilization. In order to enhance the utilization rate of steel slag, the preparation of basic pellets by using steel slag as the flux was proposed, in consideration of the high basicity of steel slag. The incorporation of steel slag has been demonstrated to enhance the water-holding capacity and the decrepitation temperature of green pellets. The addition of steel slag increases the content of calcium oxide in the pellets, promotes the formation of a fusible phase in the pellets, and thus increases the liquid phase. With the increasing content of steel slag, the porosity of finished pellets gradually increases and the compressive strength decreases, but the compressive strength of finished pellets can all exceed 2500 N. The addition of steel slag can improve the reducibility index of pellets, with the maximum reducibility index increasing by 12.06%; the reduction swelling index is less than 10.9%, and the reduction degradation index is more than 58.4%.</p>

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Experimental production of basic pellets by using steel slag as flux

  • Yue Hu,
  • Jun-ying Wan,
  • Tie-jun Chen,
  • Xian-lin Zhou,
  • Yan-hong Luo,
  • Jia-ying Jiang,
  • Huan Zhong

摘要

As a by-product of the steelmaking process, steel slag has a large stock and poor stability, which has led to a gradual decline in its utilization. In order to enhance the utilization rate of steel slag, the preparation of basic pellets by using steel slag as the flux was proposed, in consideration of the high basicity of steel slag. The incorporation of steel slag has been demonstrated to enhance the water-holding capacity and the decrepitation temperature of green pellets. The addition of steel slag increases the content of calcium oxide in the pellets, promotes the formation of a fusible phase in the pellets, and thus increases the liquid phase. With the increasing content of steel slag, the porosity of finished pellets gradually increases and the compressive strength decreases, but the compressive strength of finished pellets can all exceed 2500 N. The addition of steel slag can improve the reducibility index of pellets, with the maximum reducibility index increasing by 12.06%; the reduction swelling index is less than 10.9%, and the reduction degradation index is more than 58.4%.