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Simultaneous Behavior of Pulverized Coal Char Combustion and Fine Iron Oxide Reduction by Injecting the Mixture of Coal Char and Iron Oxide

机译:煤粉和氧化铁混合气的注入同时使煤粉燃烧和细氧化铁还原同时发生

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The present study has been carried out to investigate the simultaneous behavior of combustion of 'pulverized coal char' (described as 'char' afterwards in this paper), and of reduction of fine iron ore using a laboratory scale tube furnace. Experimental results show that apparent combustion rate of char is not affected by the ore/chat mole ratio simultaneously injected. The reaction rate constant of char was not changed with changing wustite/char injection ratio. On the other hand, the rate constant of char increased proportionally with an increase of hematite/char injection ratio. This implies that hematite behaves as an effective oxygen source for char combustion. The main reduction mechanism of fine wustite injected is found to be the direct reduction between molten wustite and unburnt carbon. Similarly, for the case of fine hematites, the direct reduction between molten magnetite thermally decomposed from hematite and solid carbon entrained into the droplet is the main reduction mechanism. It was observed that the reduction degree of fine iron oxides mainly depends on the specific combustion heat (kJ/g-ore) which is defined as the ratio of combustion heat of char to the feeding rate of fine iron oxide.
机译:进行本研究以研究“粉煤焦”(在下文中称为“焦炭”)燃烧以及使用实验室规模的管式炉还原细铁矿石的同时行为。实验结果表明,炭的表观燃烧速率不受同时注入的矿石/矿渣摩尔比的影响。炭的反应速率常数不随硅钙石/炭注入比的变化而变化。另一方面,炭的速率常数与赤铁矿/炭的喷射比的增加成比例地增加。这意味着赤铁矿可作为焦炭燃烧的有效氧源。发现注入的细铁矾石的主要还原机理是熔融铁矾石和未燃烧碳之间的直接还原。类似地,对于细赤铁矿,从赤铁矿热分解的熔融磁铁矿与夹带在液滴中的固体碳之间的直接还原是主要的还原机制。观察到,细氧化铁的还原度主要取决于比燃烧热(kJ / g-矿石),其定义为炭的燃烧热与细氧化铁的进料速率之比。

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