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The effect of composite reducing agent on the reduction process and the tail gas of carbon-containing pellets

机译:复合还原剂对含碳颗粒还原工艺及尾气的影响

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In order to explore a reasonable way for the efficient utilization of coal resources in the ironmaking process. In this paper, lignite and bituminous coal are used as reducing agents, and two types of vanadium-titanium magnetite composite reducing agent pellets are prepared for different content ratios and mixed forms of the two coal powders. Under the simulated rotary kiln pre-reduction conditions, the influence of the ratio and mixing of pulverized coal on the metallization rate and tail gas composition of the reduction process was explored. The results show that increasing the proportion of high volatile lignite is beneficial to the reduction of pellets and can obtain pellets with a higher metallization rate. Under the new pre-reduction process conditions of the rotary kiln, the vanadium-titanium magnetite double-layer pellet with 75wt% lignite inside and 25wt% bituminous coal outside has the highest metallization rate of about 76%. At the same time, this new type of composite reducing agent pellets reduced gas emissions. This pellet is of great significance to the coal-based ironmaking process.
机译:为了探索有效利用煤炭资源在炼制过程中的合理方式。在本文中,使用褐煤和沥青煤作为还原剂,并为两种煤粉的不同含量比和混合形式制备两种类型的钒 - 钛磁铁矿复合药物颗粒。在模拟的回转窑预缩减条件下,探讨了粉煤比和混合对减少过程的金属化速率和尾气组成的影响。结果表明,增加高挥发性褐煤的比例有利于减少颗粒,并可获得具有更高金属化速率的颗粒。在回转窑的新预缩程过程条件下,钒 - 钛磁铁矿双层颗粒,内部和25wt%沥青的褐煤外,外部的最高金属化率约为76%。同时,这种新型复合药物还原剂颗粒降低了气体排放。这种颗粒对煤基的炼铁工艺具有重要意义。

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