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    • 9. 发明授权
    • Process for producing molten iron
    • 铁水生产工艺
    • US07160353B2
    • 2007-01-09
    • US10479584
    • 2003-01-16
    • Isao KobayashiItsuo MiyaharaHidetoshi TanakaKoji Tokuda
    • Isao KobayashiItsuo MiyaharaHidetoshi TanakaKoji Tokuda
    • C21B15/00
    • C21B13/105C21B13/006C21B13/14C21B13/143C21B2100/44C21B2100/66C21C2250/02Y02P10/136
    • A method for making molten iron includes the steps of feeding a raw material mixture containing an iron oxide material and a carbonaceous reductant into a heating reduction furnace to reduce iron oxide in the raw material mixture with the carbonaceous reductant into solid reduced iron; transporting the solid reduced iron to a melting furnace; and combustion of a carbonaceous material supplied as fuel to melt the solid reduced iron in the melting furnace for producing molten iron. After the metallization of the solid reduced iron is enhanced to at least 60%, the solid reduced iron is transported to the melting furnace. The amounts of oxygen and the carbonaceous material supplied to the melting furnace are controlled so that the secondary combustion ratio of CO gas in the melting furnace is reduced to 40% or less. The heat transfer efficiency of the secondary combustion heat to the molten iron is preferably increased to at least 60%.
    • 制造铁水的方法包括将含有氧化铁材料和碳质还原剂的原料混合物进料到加热还原炉中以将含碳还原剂的原料混合物中的氧化铁还原为固体还原铁的步骤; 将固体还原铁输送到熔炉; 以及作为燃料供应的碳质材料的燃烧,以熔化用于生产铁水的熔化炉中的固体还原铁。 在固体还原铁的金属化增强至少60%之后,固体还原铁被输送到熔化炉。 控制供给熔化炉的氧气和碳质材料的量,使得熔融炉中CO气体的二次燃烧比降低到40%以下。 二次燃烧热对铁水的传热效率优选增加至少60%。
    • 10. 发明授权
    • Method for manufacturing reduced metal
    • 制造还原金属的方法
    • US07572316B2
    • 2009-08-11
    • US10763239
    • 2004-01-26
    • Takao HaradaHidetoshi TanakaHiroshi Sugitatsu
    • Takao HaradaHidetoshi TanakaHiroshi Sugitatsu
    • C21B13/08
    • C21B13/10C21B13/0073Y02P10/136
    • A method for manufacturing a reduced metal includes thermally reducing a metal oxide including a carbonaceous reductant disposed on a hearth moving in a reducing furnace, wherein the reducing furnace includes a plurality of primary burners for supplying fuel and primary combustion air, and a plurality of secondary combustion burners for supplying secondary combustion air; and wherein the primary combustion air and/or the secondary combustion air is oxygen-enriched air, the oxygen concentration in the primary combustion air supplied from at least one of the plurality of primary burners being controlled to be lower than the oxygen concentration in the secondary combustion air.
    • 还原金属的制造方法包括:热还原金属氧化物,其包括设置在还原炉中移动的炉床上的碳质还原剂,其中所述还原炉包括用于供给燃料和初级燃烧空气的多个主燃烧器,以及多个次级 用于供应二次燃烧空气的燃烧燃烧器; 并且其中所述主燃烧空气和/或所述二次燃烧空气是富氧空气,将从所述多个主燃烧器中的至少一个供给的所述一次燃烧空气中的氧浓度控制为低于所述二次燃烧器中的氧浓度 燃烧空气。