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    • 1. 发明授权
    • Direct reduction process
    • 直接还原过程
    • US07780759B2
    • 2010-08-24
    • US11569740
    • 2005-05-20
    • Andreas OrthHeinz EichbergerDonald Keith PhilpJeantine Van Gemund, legal representativeRod Dry
    • Andreas OrthHeinz EichbergerDonald Keith PhilpRod Dry
    • C21B13/02
    • C21B13/0033C22B5/10C22B5/14Y02P10/122Y02P10/126Y02P10/136Y02P10/216
    • A direct reduction process for a solid metalliferous material having a particle size distribution that at least in part contains micron sized particles includes supplying the metalliferous material, a solid carbonaceous material, an oxygen-containing gas, and a fluidizing gas into a fluidized bed in a vessel and maintaining the fluidized bed in the vessel, at least partially reducing metalliferous material in the vessel, and discharging a product stream that comprises the partially reduced metalliferous material from the vessel. The process includes (a) establishing and maintaining a carbon-rich zone within the fluidized bed; (b) passing metalliferous material, including metallized material (which term includes partially metallized material), through the carbon-rich zone; and (c) injecting the oxygen-containing gas into the carbon-rich zone and oxidizing metallized material, solid carbonaceous material and other oxidizable solids and gases and causing controlled agglomeration of particles.
    • 具有至少部分包含微米级颗粒的粒度分布的固体含金属材料的直接还原方法包括将含金属材料,固体碳质材料,含氧气体和流化气体供应到流化床中 容器中并维持流化床,至少部分地还原容器中的含金属材料,以及从容器中排出包含部分还原的含金属材料的产物流。 该方法包括(a)在流化床内建立和维持富含碳的区域; (b)使含金属材料(包括金属化材料(该术语包括部分金属化材料))通过富碳区域; 和(c)将含氧气体注入富碳区并氧化金属化材料,固体碳质材料和其它可氧化的固体和气体并引起颗粒的受控的团聚。
    • 4. 发明授权
    • Direct reduction process using a single fluidised bed
    • 使用单一流化床进行直接还原处理
    • US08038766B2
    • 2011-10-18
    • US11569736
    • 2005-05-20
    • Andreas OrthHeinz EichbergerDonald Keith PhilpJeantine Van Gemund, legal representativeRod Dry
    • Andreas OrthHeinz EichbergerDonald Keith PhilpRod Dry
    • C21B13/00
    • C21B13/002C21B13/0033C21B2100/282C21B2100/44C21B2100/64C21B2100/66C22B5/14Y02P10/122Y02P10/126Y02P10/136
    • A direct reduction process for a metalliferous material includes supplying the metalliferous material, a solid carbonaceous material, an oxygen-containing gas, and a fluidizing gas into a fluidized bed in a vessel and maintaining the fluidized bed in the vessel, at least partially reducing metalliferous material in the vessel, and discharging a product stream that includes the partially reduced metalliferous material from the vessel. The process comprises (a) reducing the metalliferous material in a solid state in a metal-rich zone in the vessel; (b) injecting the oxygen-containing gas into a carbon-rich zone in the vessel with a downward flow in a range of ±40° to the vertical and generating heat by reactions between oxygen and the metalliferous material (including metallized material), the solid carbonaceous material and other oxidizable solids and gases in the fluidized bed, and (c) transferring heat from the carbon-rich zone to the metal-rich zone by movement of solids within the vessel. The metal-rich zone is formed in a lower section of the vessel and the carbon-rich zone is an intermediate section below an upper section of the vessel. Oxygen-containing gas is injected into a central region of the vessel.
    • 用于含金属材料的直接还原方法包括将含金属材料,固体碳质材料,含氧气体和流化气体供应到容器中的流化床中并将流化床保持在容器中,至少部分地还原金属 并且从容器中排出包括部分还原的含金属材料的产物流。 该方法包括(a)在容器中的金属富集区中还原固态的含金属材料; (b)将含氧气体注入容器内的富含碳的区域,向下流动至垂直于±40°的范围,并通过氧气和含金属材料(包括金属化材料)之间的反应产生热量, 固体碳质材料和其它可氧化的固体和气体在流化床中,和(c)通过容器内的固体的移动将热量从富碳区转移到富含金属的区域。 金属富集区形成在容器的下部,富碳区是在容器的上部下方的中间部分。 将含氧气体注入容器的中心区域。