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Thermodynamic analysis of efficient recovery and utilisation of waste heat resources during sintering process

机译:烧结过程中余热资源有效回收利用的热力学分析

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摘要

Efficient recycling and utilisation of waste heat resources are among the primary methods in saving energy during sintering process, as waste heat resource recycling and utilisation are essentially energy conversion process. The purpose of this study is to analyse energy conversion and utilisation during the sintering process, and waste heat resources in each subsystem during the sintering process were analysed quantitatively and qualitatively. The results were shown that producing 1 t of sinter will generate 1439.36 MJ of waste heat resource in which sinter and sintering flue gas accounts for 70.87% and 29.13%, respectively. The external exergy loss of sin-sub was the largest among sin-sub, coo-sub and boi-sub; therefore, setting the appropriate thickness of sinter bed in the sinter cooler, controlling the flow rate of the cooling air and recycling the exergy of cooling flue gas with moderate temperature were the primary method of increasing the exergy efficiency.
机译:高效利用和利用余热资源是烧结过程中节约能源的主要方法,因为余热资源的利用和利用实质上是能量转换过程。这项研究的目的是分析烧结过程中的能量转化和利用,并对烧结过程中每个子系统中的废热资源进行定量和定性分析。结果表明,生产1吨烧结矿将产生1439.36 MJ的废热资源,其中烧结矿和烧结烟气分别占70.87%和29.13%。 sin-sub的外部火用损失在sin-sub,coo-sub和boi-sub中是最大的。因此,在烧结矿冷却器中设置合适的烧结矿床厚度,控制冷却空气的流量,并在适当的温度下回收冷却烟气的火用是提高火用效率的主要方法。

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