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

Reduction and Carbonization of Iron Concentrate with Hydrogen-Rich Gas

  • Run Zhang,
  • Chao Wang,
  • Yang You,
  • Jie Dang

摘要

Iron concentrateIron concentrate can be obtained from vanadium titanium bearing magnetite ore through beneficiation, which mainly recovers iron and vanadium resources through the process of blast-furnace ironmakingIronmaking and converter vanadium extraction. However, this process has the bottleneck problems of large carbon emission and high process energy consumption, which does not meet the development trend of green and low-carbon smelting. Based on hydrogen metallurgyHydrogen metallurgy technology, the reductionReduction and carbonizationCarbonization of iron concentrate in hydrogen-rich gasHydrogen-rich gas system (CH4–H2 gas mixture) was studied in this paper. The theoretical calculation results show that the Fe-containing phase in iron concentrateIron concentrate could be completely reduced and carbonized to Fe3CFeC above 709 °C, while Fe3C cannot exist stably below 900 ℃. The experimental results are basically consistent with the thermodynamic results. The results preliminarily confirm the feasibility of producing high value-added product Fe3C fromFeC iron concentrate by hydrogen-rich gas, which provides a possible way of smelting iron concentrateIron concentrate.