首页> 外文期刊>鉄と鋼/Journal of the Iron and Steel Institute of Japan. >Formation of Iron Carbide in Fluidized Bed by the Reactions of Partially Pre-reduced Iron Ore with CO-H{sub}2-H{sub}2S Mixtures: Influence of the Reduction Degree
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Formation of Iron Carbide in Fluidized Bed by the Reactions of Partially Pre-reduced Iron Ore with CO-H{sub}2-H{sub}2S Mixtures: Influence of the Reduction Degree

机译:部分预还原铁矿石与CO-H {sub} 2-H {sub} 2S混合物的反应在流化床中形成碳化铁:还原度的影响

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摘要

In our previous studies of the iron carbide formation, the iron ore particles were completely reduced to metallic iron and then the reduced iron was carburized with CO-H{sub}2-H{sub}2S mixtures. However, the reactivity of the reduced iron seems to definitely influence the rate of the iron carbide formation. Therefore, in this study, at the atmospheric pressure and 873K, iron ore particles of hematite were first reduced to various reduction degrees with 50% N{sub}2-H{sub}2-H{sub}2S mixture and second exposed to CO-H{sub}2-H{sub}2S mixtures with a{sub}s=0.5. The remained iron oxides are reduced and then the fresh reduced iron ore of somewhat low sulfur contents is immediately carburized. It was experimentally confirmed that the lower the pre-reduction degree, the faster the carburization rate and the easier the formation of Fe{sub}5C, and free carbon. The recommended condition for the fast and stable carbide formation is to be a low pre-reduction degree and the CO-H{sub}2-H{sub}2S mixtures containing less than 60% CO. From the microscopic observation of cross sections of samples, a new knowledge was obtained that the remained wustite and reduced iron are open to the reaction gas access through the pore of particles.
机译:在我们先前关于碳化铁形成的研究中,铁矿石颗粒被完全还原成金属铁,然后还原的铁被CO-H {sub} 2-H {sub} 2S混合物渗碳。但是,还原铁的反应性似乎肯定会影响碳化铁形成的速率。因此,在这项研究中,在大气压和873K下,赤铁矿的铁矿石颗粒首先用50%N {sub} 2-H {sub} 2-H {sub} 2S混合物还原成各种还原度,然后再暴露于{sub} s = 0.5的CO-H {sub} 2-H {sub} 2S混合物。还原残留的氧化铁,然后立即对渗碳量较低的新鲜还原铁矿石进行渗碳处理。实验证实,预还原度越低,渗碳速度越快,Fe {sub} 5C和游离碳的形成越容易。快速而稳定的碳化物形成的推荐条件是低的预还原度和CO-H {sub} 2-H {sub} 2S混合物中的CO含量低于60%。在样品中,获得了新的知识,即残留的铁矾和还原铁对通过颗粒孔进入反应气体开放。

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