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Future Steelmaking Model by Direct Reduction Technologies

机译:直接还原技术的未来炼钢模型

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Steel production requires iron ore and coal, and accompanies greenhouse gas emissions. The annual production of the world crude steel increased from 0.9 to 1.3 billion tonnes since 2002, and is anticipated to increase due to the continuous economic growth in developing countries especially in Asia.About two thirds of the crude steel is produced by BF–BOF route whose ratio in the total crude steel production has gradually been increasing. The BF–BOF process is an excellent process in terms of productivity and energy efficiency, the process, however requires high grade iron ore and coal, and the large steel production by the BF–BOF route will accelerate the exhaustion of the high grade raw materials. The CO_(2) emissions are also anticipated to increase as does the steel production, since approximately 2 tonnes of CO_(2) is generated per tonne of steel by the BF–BOF process.On the other hand, world in-use steel stock has been increasing year by year due to the continuous large steel production, and will be recycled as a large amount of scrap to the market in the future.Steelmaking by feeding Iron Nuggets to EAF together with the scrap can significantly decrease the CO_(2) emissions while satisfying the steel quality by diluting the impurities containing in the scrap, as well as conserving the natural resources of high grade iron ore and coal. Steel production by using the direct reduction processes together with the scrap is a suitable and reasonable solution for a sustainable iron and steel making.
机译:钢铁生产需要铁矿石和煤炭,并伴有温室气体排放。自2002年以来,世界粗钢的年产量从0.9亿吨增加到13亿吨,由于发展中国家(尤其是亚洲)的持续经济增长,预计年产量将增加。大约三分之二的粗钢是通过高炉-转炉生产的其在粗钢总产量中所占的比例逐渐增加。 BF-BOF工艺在生产率和能源效率方面是出色的工艺,但是该工艺需要高品位的铁矿石和煤炭,并且高炉-BOF路线的大量钢铁生产将加速高品位原材料的消耗。由于BF-BOF工艺每吨钢产生大约2吨CO_(2),因此预计CO_(2)排放量也将与钢铁生产一样增加。另一方面,世界在用钢库存由于钢铁产量的持续增长,铁矿石量一直在逐年增加,将来会作为大量废钢被回收再利用到市场中。将铁块与废钢一起加入炼钢可以显着降低CO_(2)通过稀释废钢中的杂质满足钢质要求,同时节约高品位铁矿石和煤炭的自然资源。通过将直接还原工艺与废钢一起使用来生产钢铁是可持续钢铁生产的合适且合理的解决方案。

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