• Manganese Ore Carbonate, Mn 13%min EXW China(1.3)  05-10|Manganese Ore Gabonese 44%min In Qinzhou Port(1.7)  05-10|Manganese Ore Gabonese 44%min In Tianjin Port(1.7)  05-10|Manganese Ore Brazilian 44%min In Qinzhou Port(1.7)  05-10|Manganese Ore Australian 45%min In Qinzhou Port(1.7)  05-10|Manganese Ore Australian 45%min In Tianjin Port(1.7)  05-10|Manganese Ore Brazilian 44%min In Tianjin Port(1.7)  05-10|Manganese Ore S.A. 36%min In Qinzhou Port(1.5)  05-10|Manganese Ore S.A. 36%min In Tianjin Port(1.5)  05-10|Manganese Ore S.A. 37%min In Qinzhou Port(1.5)  05-10|Manganese Ore S.A. 37%min In Tianjin Port(1.5)  05-10|Copper Conc. TC 25%min CIF China(-1)  05-10|Ferro-manganese Mn 65%min, C 7%max EXW China(200)  05-10|Ferro-manganese Mn 75%min, C 8%max EXW China(200)  05-10
  • Analysis on ferromolybdenum production technique

    2013-02-04 15:16:39   【Print】
    The following is a brief synopsis of the report. Your access is restricted as it is a subscription based service.
    Please contact us for a subscription.
    Among all production techniques of ferromolybdenum, Perrin process is the most popular one, while EF carbothermy and plasma heating furnace processes are also used to smelt ferromolybdenum. As Perrin process is adopted by most ferromolybdenum producers, so it is the focus of this article:
    .Asian Metal CopyrightAmong all production techniques of ferromolybdenum, Perrin process is the most popular one, while EF carbothermy and plasma heating furnace processes are also used to smelt ferromolybdenumAsian Metal Copyright
      Copyright © Asian Metal Ltd All rights reserved.