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    • 1. 发明授权
    • Direct reduction process for producing metallic iron
    • 用于生产金属铁的直接还原工艺
    • US4348226A
    • 1982-09-07
    • US186131
    • 1980-09-11
    • Mamoru AokiMasahiro TomitaKei UtsunomiyaHironobu SakoDentaro KanekoKatsunori ShimazakiYoshitomo Ishii
    • Mamoru AokiMasahiro TomitaKei UtsunomiyaHironobu SakoDentaro KanekoKatsunori ShimazakiYoshitomo Ishii
    • C21B13/00C21B13/02
    • C21B13/0073Y02P10/136Y02P10/143Y02P10/265Y02P10/283
    • A process for the direct reduction of iron oxide by blowing into a reduction furnace a reducing gas which is prepared by reforming a mixture of a reduction furnace exhaust gas and a gas mainly composed of methane, which comprises the steps of dividing the gas mainly composed of methane into two branch streams, mixing the first branch stream gas with a part of the reduction furnace exhaust gas and supplying the resulting mixture to the externally heated reformer furnace, to produce a high-temperature reformed gas; mixing the second branch stream gas with said high-temperature reformed gas and during the course to the reduction furnace, subjecting the mixture to endothermic reforming reactions in an after-reactor without external heating, utilizing the sensible heat of the high-temperature mixed gas, controlling the self-reforming reactions so as to lower the temperature and simultaneously adjust the composition of the high-temperature mixed gas, and blowing the reducing gas obtained into the reduction furnace. Effective use of the sensible heat can be achieved.
    • 通过将还原炉废气和主要由甲烷构成的气体的混合物进行重整制备的还原气体,通过向还原炉吹入还原气体来直接还原氧化铁的方法,该方法包括以下步骤:将主要由 将甲烷分成两个分支流,将第一分支气体气体与还原炉废气的一部分混合,并将所得混合物供给到外部加热的重整炉中,以产生高温重整气体; 将第二分支气体气体与所述高温重整气体混合,并且在还原炉的过程中,利用高温混合气体的显热,在未经外部加热的混合物中进行吸热重整反应, 控制自重整反应以降低温度并同时调节高温混合气体的组成,并且将获得的还原气体吹入还原炉。 可以有效地利用显热。
    • 5. 发明授权
    • Method of producing iron using rotary hearth and apparatus
    • 使用旋转炉床和设备生产铁的方法
    • US4701214A
    • 1987-10-20
    • US857684
    • 1986-04-30
    • Dentaro KanekoDavid C. Meissner
    • Dentaro KanekoDavid C. Meissner
    • C21B11/00C21B11/02C21B13/10C21B13/14C21B13/08F27B3/06
    • C21B13/105C21B13/14Y02P10/136
    • A method of producing iron from finely divided iron oxide comprising the steps of: mixing iron oxide or iron ore fines with finely divided coal and a binder to form a mixture, agglomerating the mixture by compacting, pelletizing, or briquetting the mixture to form agglomerates or pellets, introducing the pellets to a rotary hearth furnace to prereduce the iron in the pellets, introducing the prereduced pellets into a smelting reduction vessel as the metallic charge constituent, introducing particulate carbonaceous fuel and oxygen to the smelting reduction vessel through the bottom of the vessel to react with the melt or bath within the vessel, reduce the iron to elemental iron and form an off gas containing CO and H.sub.2 introducing the off-gas into the rotary hearth furnace as process gas to prereduce the pellets therein, and drawing off the hot metal from the smelting reduction vessel.The prereduced compacts are preferably discharged from the rotary hearth furnace at a temperature of at least 1000.degree. C. into the smelting reduction vessel to form the molten iron product.
    • 一种从细碎铁氧化物生产铁的方法,包括以下步骤:将氧化铁或铁矿石细粉与精细分散的煤和粘合剂混合以形成混合物,通过压实,造粒或压块混合物形成附聚物 将颗粒引入到转底炉中以预还原颗粒中的铁,将预还原的颗粒引入作为金属电荷成分的熔融还原容器中,将颗粒状碳质燃料和氧气通过容器的底部引入冶炼还原容器 与容器内的熔体或浴液反应,将铁还原成铁,并形成含有CO和H2 + L的废气,将废气引入转炉底炉中作为预还原颗粒的工艺气体,并进行拉伸 从冶炼还原容器中取出热金属。 优选将预先形成的成形体从回转炉底炉中至少在1000℃的温度下排出到熔融还原容器中,形成铁水制品。