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Reduction

Separation and recovery of iron and manganese from high-iron manganese oxide ores by reduction roasting and magnetic separation technique

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Pages 1321-1332 | Received 13 Aug 2016, Accepted 17 Jan 2017, Published online: 15 Mar 2017

References

  • Hazek, M.N.; Lasheen, T.A.; Helal, A.S. (2006) Reductive leaching of manganese from low grade Sinai ore in HCl using H2O2 as reductant. Hydrometallurgy, 84 (3–4): 187–191.
  • Nayl, A.A.; Ismail, I.M.; Aly, H.F. (2011) Recovery of pure MnSO4·H2O by reductive leaching of manganese from pyrolusite ore by sulfuric acid and hydrogen peroxide. International Journal of Mineral Processing, 100 (3–4): 116–123.
  • Tan, Z.Z.; Mei, G.G.; Li, W.J.; Z, K.X.; L, R.T.; Z, X.B. (2004) Manganese Metallurgy, Central South University Press: Changsha, China.
  • Baioumy, H.M.; Khedr, M.Z.; Ahmed, A.H. (2013) Mineralogy, geochemistry and origin of Mn in the high-Mn iron ores, Bahariya Oasis, Egypt. Ore Geology Reviews, 53: 63–67.
  • Fan, D.; Yang, P. (1999) Introduction to and classification of manganese deposits of China. Ore Geology Reviews, 15: 1–13.
  • Yao, B.H. (1996) Chinese Manganese Ore. Metallurgy Industry Press: Beijing, China.
  • Cheng, Z.; Zhu, G.C.; Zhao, Y.N. (2009) Study in reduction-roast leaching manganese from low-grade manganese dioxide ores using cornstalk as reductant. Hydrometallurgy, 96: 176–179.
  • Hariprasad, D.; DashM, B.; Ghosh, K.; Anand, S. (2007) Leaching of manganese ores using sawdust as a reductant. Minerals Engineering, 20 (14): 1293–1295.
  • Abbruzzese, C. (1990) Percolation leaching of manganese ore by aqueous sulfur dioxide. Hydrometallurgy, 25 (1), 85–97.
  • Jouni, P.; Markku, L.; Katri, S.; Erkki, P.; Risto, K.; Risto, H. (2009) Behavior of silica-supported manganese oxides in hydrometallurgical separations. Separation Science and Technology, 44: 3045–3074.
  • Zhang, Y.B.; You, Z.X.; Li, G.H.; Jiang, T. (2013) Manganese extraction by sulfur-based reduction roasting-acid leaching from low-grade manganese oxide ores. Hydrometallurgy, 133: 126–132.
  • You, Z.X.; Li, G.H.; Zhang, Y.B.; Peng, Z.W.; Jiang, T. (2015) Extraction of manganese from iron rich MnO2 ores via selective sulfation roasting with SO2 followed by water leaching. Hydrometallurgy, 156: 225–231.
  • Pradyumna, K.N.; Sukla, L.B.; Das, S.C. (2002) Application of statistical design in the leaching study of low-grade manganese ore using aqueoussulfur dioxide. Separation Science and Technology, 37 (6): 1375–1389.
  • Gao, Y.B.; Olivas-Martinez, M.; Sohn, H.Y.; Hang, G.K.; Chan, W.K. (2012) Upgrading of low-grade manganese ore by selective reduction of iron oxide and magnetic separation. Metallurgical and Materials Transactions B, 43 (6):1465–1475.
  • Huang, Z.C.; Chai, B.; Yi, L.Y.; Jiang, T. (2013) Reduction and separation of high iron content manganese ore and its mechanism. 4th International Symposium on High-Temperature Metallurgical Processing, TMS, San Antonio, 367–374.
  • Huang, Z.C.; Zhao, P.; Jiang, T.; Chai, B. (2012) Process for coal-based direct reduction and magnetic separation of a high-iron manganese ore. Metal Mine, 3: 74–77. (in Chinese)
  • Zhang, Y.B.; Liu, B.B.; You, Z.X.; Su, Z.J.; Luo, W.; Li, G.H.; Jiang, T. (2016) Consolidation behavior of high-Fe manganese ore sinters with natural basicity. Mineral Processing and Extractive Metallurgy Review. DOI: 10.1080/08827508.2016.1218870.
  • Li, G.H.; Zhang, S.H.; Rao, M.J.; Zhang, Y.B.; Jiang, T. (2013) Effects of sodium salts on reduction roasting and Fe-P separation of high-phosphorus oolitic hematite ore. International Journal of Mineral Processing, 124: 26–34.
  • Jiang, T.; Liu, M.D.; Li, G.H.; Sun, N.; Zeng, J.H.; Qiu, G.Z. (2010) Effects of sodium-salt on Al-Fe separation by reduction roasting for high-aluminum content limonite. The Chinese Journal of Nonferrous Metals, 20 (6): 1226–1232. (in Chinese)
  • Li, G.H.; Shi, T.M.; Rao, M.J.; Jiang, T.; Zhang, Y.B. (2012) Beneficiation of nickeliferous laterite by reduction roasting in the presence of sodium sulfate. Minerals Engineering, 32: 19–26.
  • Li, G.H.; Liang, B.J.; Rao, M.J.; Zhang, Y.B.; Jiang, T. (2014) An innovative process for extracting boron and simultaneous recovering metallic iron from ludwigite ore. Minerals Engineering, 56: 57–60.
  • Li, G.H.; Rao, M.J.; Jiang, T.; Huang, Q.Q.; Shi, T.M.; Zhang, Y.B. (2011) Innovative process for preparing ferronickel materials from laterite ore by reduction roasting-magnetic separation. The Chinese Journal of Nonferrous Metals, 21 (12): 3137–3142. (in Chinese)
  • Iron and Steel Association of Engineers in Germany. (1989) Atlas of Slag, Metallurgical industry press: Beijing, China.
  • Indacochea, J.E.; Blander, M.; Christensen, N.; Olson, D. (1985) Chemical reactions during submerged arc welding with FeO-MnO-SiO2 fluxes. Metallurgical and Materials Transactions B, 16 (2): 237–245.
  • McAmish, L.H.; Johnston, F.J. (1976) Sulfur exchange and decomposition kinetics in solid Na2S2O3. Journal of Inorganic and Nuclear Chemistry, 38 (3): 537–540.
  • Li, B.; Wang, H.; Wei, Y. (2011) The reduction of nickel from low-grade nickel laterite ore using a solid-state deoxidization method. Minerals Engineering, 24: 1556–1562.
  • Hou, S.D. (1981) The role of mirabilite on melting glass with low alkali and high alumina. Glass, (4): 44–47. (in Chinese)
  • Meng, Z.; Jiang, H.; Wang, H.; Huang, Y.R.; Cui, Z.; Li, C.J. (2012) Review on mechanism and application of sodium sulphate in float glass production. Journal of Materials Science and Engineering, 1 (30): 160–164. (in Chinese)
  • Liu, M.D.; Jiang, T.; Li, G.H.; Liu, Y.; Liu, Z.Z. (2014) Difference between Na2SO4 and Na2CO3 on Al-Fe separation of high aluminum iron ores. The Chinese Journal of Nonferrous Metals, 24 (8): 2129–2137. (in Chinese)
  • Hillert, M.; Staffansson, L. (1976) A thermodynamic analysis of the phase equilibria in the Fe-Mn-S system. Metallurgical and Materials Transactions B, 7 (2): 203–211.
  • Nagata, K.; Bolsaitis, P. (1986) Selective removal of iron oxide from laterite by sulfurization and chlorination. International Journal of Mineral Processing, 19 (1–4): 157–172.
  • Okajima, Y.J. (1987) Studies on the reductive roasting of laterite ores by a coal-containing pellet method. II. Influence of the change of minerals on selective reductive roasting of garnieritic ores. Journal of the Mining and Metallurgical Institute of Japan, 1188 (103): 115–120.
  • Watanabe, T.; Ono, S.; Arai, H. (1987) Direct reduction of garnierite ore for production of ferro-nickel with a rotary kiln at nippon Yakin Kogyo Go. Ltd Oheyama works. International Journal of Mineral Processing, 19 (1): 173–187.
  • Jiang, M.; Sun, T.C.; Liu, Z.G.; Kou, J.; Zhang, S.Y. (2013) Mechanism of sodium sulfate in promoting selective reduction of nickel laterite ore during reduction roasting process. International Journal of Mineral Processing, 123: 32–38.
  • Wang, C. (2008) Phase Diagrams and Its Application. Higher Education Press: Beijing, China.
  • Li, G.H.; Zhi, Q.; Rao, M.J.; Zhang, Y.B.; Cai, W.; Jiang, T. (2013) Effect of basicity on sintering behavior of saprolitic nickel laterite in air. Powder Technology, 249: 212–219.

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