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Reduction Behavior of Self-Reducing Pellet (SRP) for Low Height Blast Furnace

机译:低高度高炉的自还原颗粒(SRP)还原行为

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One way to decrease the reducing agent rate in a blast furnace (BF) is the lowering of thermal reserve zone (TRZ) temperature by using self-reducing pellets (SRP). The lower strength requirement of raw materials for small BFs allows the charging of SRP. In the scope of the current study, the behavior of SRP under the TRZ simulated conditions has been investigated. Coal, charcoal, and coke breeze were used as embedded reducing agents. The reduction experiments have been performed under different iso- and non-isothermal scenarios. A Tammann furnace laboratory rig and a simultaneous Thermogravimetric/Differential Thermal Analysis (TG/DTA) experimental set were used for investigations. Mass loss, reduction degree, metallization degree, volume change, and reaction heat flow were examined. The results from experiments with TRZ condition show that embedded reducing agents, especially charcoal, promote iron oxide reduction in pellets. The crushing strengths of SRPs after both methods of hardening, fire-hardening and cement-bonded curing, and the reduction of cement-bonded SRP after curing have been investigated as well.
机译:降低高炉(BF)中还原剂比率的一种方法是通过使用自还原颗粒(SRP)降低热储备区(TRZ)温度。小型高炉原料的强度要求较低,因此可以加入SRP。在当前研究的范围内,已经研究了TRZ模拟条件下SRP的行为。煤,木炭和焦炭微风用作嵌入式还原剂。还原实验已在不同的等温和非等温场景下进行。 Tammann炉实验室设备和同时进行的热重/差热分析(​​TG / DTA)实验装置用于研究。检查质量损失,还原度,金属化度,体积变化和反应热流。在TRZ条件下进行的实验结果表明,嵌入的还原剂(尤其是木炭)促进了颗粒中氧化铁的还原。还研究了硬化,火硬化和水泥粘结固化后两种方法对SRP的抗碎强度以及固化后水泥粘结SRP的降低。

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