首页> 外文期刊>鉄と鋼/Journal of the Iron and Steel Institute of Japan. >Recent Progress of Iron Ore Agglomeration Technology
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Recent Progress of Iron Ore Agglomeration Technology

机译:铁矿石集聚技术的最新进展

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摘要

Sintering technology has evolved steadily in the last decade by upgrading specifications of apparatus around the sinter strand and by the sophisticated process control methods. In order to use much difficult-to-sinter raw material without decreases of productivity and product yield and also deterioration of quality, new types of granulation systems for control of mineral constitution formation, such as HPS (Hybrid Pelletized Sinter) Process, CaO Selective Pregranulation Process and Self-Densificication and High-Melting-Point Liquid-Phase Sintering Process, have been developed and installed successfully. Increased productivity has been achieved through improving product yield and permeability in sintering bed by the development of new types of raw mixture feeder, such as 1SF (Intensified Sifting Feeder) etc., and by the technology of homogeneous sintering both horizontally and vertically in the bed, such as SECOS (Sintering Energy Control System) etc. In addition, older and less efficient sintering machines are closed, converging on large -scale and small number machines which in turn renewed process control system based on artificial intelligence and introduced high-efficient and compact environmental systems as replace of old ones.Eventually, the major improvements have been achieved in four items:(1)Increase use of cheap raw materials such as limonite ore and pellet feed.(2)Reduce production costs by productivity increase with high product-yield and by man power saving.(3)Uupgrade sinter quality in slag volume and reducibility for acceleration of PCI injection to blast furnace.(4)Reduce environmental impact with use of high efficient apparatus.
机译:在过去的十年中,通过升级围绕烧结带的设备规格并采用了先进的过程控制方法,烧结技术得到了稳步发展。为了在不降低生产率和产品产量且不降低质量的情况下使用难以烧结的原料,采用了新型的制粒系统来控制矿物成分的形成,例如HPS(混合粒化烧结)工艺,CaO选择性预造粒已成功开发并安装了工艺,自增密化和高熔点液相烧结工艺。通过开发新型原料混合物给料机(例如1SF(强化筛分给料机)等)以及在床内水平和垂直均匀烧结技术,提高了烧结床的产品产量和渗透性,从而提高了生产率。此外,封闭的老式和低效率烧结机已经关闭,在大型和小型机器上融合,继而又更新了基于人工智能的过程控制系统,并引入了高效,低成本的烧结机。紧凑的环境系统代替了旧的系统产量并节省人力。(3)提升烧结矿的渣量和还原性,从而加快PCI注入高炉的速度。(4)通过使用高效设备减少环境影响。

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