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Heat Recovery Process from Packed Bed of Hot Slag Plates

机译:热渣板填充床的热回收工艺

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Reduction of CO_(2) emissions from the steelmaking process is strongly required for prevention of global warming. One promising heat resource that is estimated to have great potential for energy saving is the waste heat of steelmaking slag, which has a temperature of above 1673 K in the molten state. This molten slag can be solidified in a plate-like shape by feeding it on the surface of water-cooled rolls, and the heat of the plate-like slag can be recovered easily in spite of its low heat conductivity. When these hot slag plates are packed in a slag chamber, the heat of the slag can be recovered by heat exchange with a counter current gas flow. Because the efficiency of gas-slag heat transfer changes depending on the shape of the packed slag, it is difficult to estimate the efficiency of slag heat recovery without evaluating the accuracy of the heat transfer coefficient in the bed. In this work, the effect of the slag shape on the accuracy of the heat transfer equation was evaluated by conducting both laboratory-scale and pilot-scale slag heat recovery experiments and performing a fitting analysis by using a slag packed bed heat transfer simulation model. A comparison of the experimental results and calculation results confirmed that the heat transfer coefficient can be estimated by using Johnson-Rubesin’s equation modified by a correction factor in case the packed materials are plate-like. The effect of the correction factor on the efficiency of slag heat recovery at the industrial scale was also estimated.
机译:为防止全球变暖,强烈要求减少炼钢过程中的CO_(2)排放。估计有巨大节能潜力的一种有前途的热源是炼钢炉渣的废热,其熔融态温度超过1673K。通过将该熔融炉渣供给到水冷辊的表面,可以将其固化成板状,并且尽管其导热率低,也可以容易地回收板状炉渣的热量。当将这些热的炉渣板填充在炉渣室中时,可以通过与逆流气流进行热交换来回收炉渣的热量。由于炉渣传热效率根据填充炉渣的形状而变化,因此在不评价床内传热系数的精度的情况下,难以估计炉渣的热回收效率。在这项工作中,通过进行实验室规模和中试规模的炉渣热回收实验,并通过使用炉渣填充床传热模拟模型进行拟合分析,评估了炉渣形状对传热方程精度的影响。通过对实验结果和计算结果进行比较,可以确定,在填充材料为板状的情况下,可以使用校正因子修正的Johnson-Rubesin方程估算传热系数。还估计了校正因子对工业规模炉渣热回收效率的影响。

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