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首页> 外文期刊>鉄と鋼/Journal of the Iron and Steel Institute of Japan. >Improvement of Blast Furnace Reaction Efficiency by Use of High Reactivity Coke
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Improvement of Blast Furnace Reaction Efficiency by Use of High Reactivity Coke

机译:利用高反应活性焦提高高炉反应效率

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摘要

The temperature control technology of the thermal reserve zone is examined as a technology which drastically improves reaction efficiency in the blast furnace, and the usage technology of high reactivity coke is proposed.The adiabatic blast furnace simulator which is able to simulate the temperature transition and the gas volume change according to the coke reaction under ore and coke coexistence is developed.Following findings are obtained.The starting temperature of coke reaction corresponds to the temperature of the thermal reserve zone (Ttrz).Ttrz has decreased along with the rise of the coke reactivity. The blast furnace reaction efficiency improves by using high reactivity coke voluminously and by mixing using the small-size high reactivity coke and sinter.The decrease of the fuel ratio of about 25-35 kg/t can be expected by using the high reactivity coke.The factors of reaction efficiency improvement by using the high reactivity coke are shown as follows.①Transition of FeO-Fe reduction equilibrium point (W point), that is, decrease of thermal reserve zone temperature, ② Improvement of the gas reduction ability by the coke reaction, ③ Increase of micro-pore volume according to reduction from wustite to iron, ④ Decrease of melt generation and control of pore decrease by reduction of CW (calico-wustite), ⑤ Gas reduction promotion by increase of porosity.
机译:研究了热保留区的温度控制技术,作为一种可大大提高高炉反应效率的技术,并提出了高反应性焦炭的使用技术。绝热高炉模拟器能够模拟温度变化和温度变化。根据矿石中焦炭反应的气体体积变化和焦炭共存的发展,得到以下发现:焦炭反应的起始温度对应于储热区的温度(Ttrz),Ttrz随着焦炭的升高而降低反应性。大量使用高反应性焦炭并混合使用小尺寸高反应性焦炭和烧结矿可提高高炉反应效率。使用高反应性焦炭可望降低燃料比约25-35 kg / t。使用高反应性焦炭改善反应效率的因素如下:①FeO-Fe还原平衡点(W点)的转变,即热储备区温度的降低;②焦炭对气体还原能力的提高反应;③随着从铁钙铁矿到铁的还原,微孔体积的增加;④通过减少顺时针(钙铁钙铁钙石)的生成,减少熔体的产生和控制孔的减少;⑤通过增加孔隙率来促进气体的还原。

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