首页> 外文会议>TMS Annual Meeting Exhibition >FLASH REDUCTION OF MAGNETITE AND HEMATITE CONCENTRATES WITH HYDROGEN IN A LAB-SCALE REACTOR FOR A NOVEL IRONMAKING PROCESS
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FLASH REDUCTION OF MAGNETITE AND HEMATITE CONCENTRATES WITH HYDROGEN IN A LAB-SCALE REACTOR FOR A NOVEL IRONMAKING PROCESS

机译:磁铁矿和赤铁矿闪光减少浓缩氢气在实验室凝固反应器中的氢气,用于新颖的炼铁工艺

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As part of the development of a novel flash ironmaking process at the University of Utah, a lab-scale flash reactor was used to produce iron directly from iron oxide concentrate. This work tested the feasibility of the novel flash ironmaking process using the partial combustion of hydrogen as fuel and reductant. In this flash reactor, the energy required to reduce concentrate particles was obtained from the internal combustion of hydrogen and oxygen with complementary energy from electrical resistance heating to compensate for the heat loss. After the reaction shaft was electrically pre-heated, hydrogen and oxygen streams produced a non-premixed flame inside the reaction shaft. Various conditions such as flame configuration, flame power, positions of concentrate feeding ports, excess hydrogen amount and residence time were tested. More than 90% reduction of magnetite or hematite was achieved at temperatures as low as 1175°C with < 100% excess hydrogen in <10 s of residence time.
机译:作为犹他大学的新型闪光炼铁过程的开发的一部分,使用实验室速率闪光反应器直接从氧化铁浓缩物生产铁。这项工作测试了使用氢气作为燃料和还原剂的部分燃烧进行了新型闪蒸炼铁工艺的可行性。在该闪光反应器中,从氢气和氧气的内燃和从电阻加热互补的能量获得减少浓缩颗粒所需的能量,以补偿热量损失。在反应轴被电预热之后,氢气和氧气流在反应轴内产生未预混合的火焰。测试了诸如火焰配置,火焰动力,浓缩料口的位置,过量氢气量和停留时间的各种条件。在<10s的停留时间为<10s的氢气,在低至1175℃的温度下实现磁铁矿或赤铁矿的减少超过90%。

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