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首页> 外文期刊>Steel Research International >Exploration of Straw Fiber as Reducing Agent Utilization in Rotary Hearth Furnace Process for Direct Reduced Iron Production
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Exploration of Straw Fiber as Reducing Agent Utilization in Rotary Hearth Furnace Process for Direct Reduced Iron Production

机译:直接还原铁生产中在旋转炉膛法中利用秸秆纤维作为还原剂的探索

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摘要

Straw fiber is a waste obtained by jet milling after extracting valuable substances form corn straw through steam explosion-washing-mechanical carding process. At the same time, it is also a clean and renewable reducing agent. In this study, physical and chemical characteristics of straw fiber were investigated firstly. The usage of straw fiber in rotary hearth furnace process for direct reduced iron production was then discussed. The results show that on one hand, fixed carbon content in straw fiber is low, which is unfavorable for the productivity of direct reduced iron; on the other hand, ash and sulfur content is also low, which improves the quality of direct reduced iron. Besides, the fibrous structure is conducive to improving the pelletizing performance of carbon-containing pellets, thus reducing an additional amount of binder. Compared with common reducing agents, straw fiber provides better reduction effect, and straw fiber carbon-containing pellets possess higher compressive strength and larger volumetric shrinkage, which is beneficial to increase the thickness of the whole material layer in rotary hearth furnace. In addition, these carbon-containing pellets also have advantages of lowering C/O ratio and shortening reduction time. The appropriate C/O and reduction time are 0.8 and 15 min, respectively, and the particle size of straw fiber below 0.15 mm has better reduction effect. This study aims to provide theoretical and technical basis for the utilization of straw fiber in rotary hearth furnace process.
机译:秸秆纤维是通过蒸汽爆破-机械梳理工艺从玉米秸秆中提取有价值的物质后,通过气流粉碎获得的废物。同时,它还是一种清洁和可再生的还原剂。本研究首先研究了秸秆纤维的理化特性。然后讨论了秸秆纤维在旋转炉膛炉中用于直接还原铁生产的用途。结果表明,一方面,秸秆纤维中的固定碳含量低,不利于直接还原铁的生产。另一方面,灰分和硫含量也低,这提高了直接还原铁的质量。此外,纤维结构有利于改善含碳粒料的造粒性能,从而减少了粘合剂的额外用量。与常规还原剂相比,秸秆纤维具有更好的还原效果,秸秆纤维含碳颗粒具有较高的抗压强度和较大的体积收缩率,有利于增加转底炉中整个材料层的厚度。另外,这些含碳粒料还具有降低C / O比和缩短还原时间的优点。合适的C / O和还原时间分别为0.8和15分钟,并且秸秆纤维的粒径在0.15mm以下具有更好的还原效果。本研究旨在为秸秆纤维在转底炉中的利用提供理论和技术基础。

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