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Thermodynamic optimization opportunities for the recovery and utilization of residual energy and heat in China's iron and steel industry: A case study

机译:钢铁行业余热和余热回收利用的热力学优化机会:案例研究

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Analyses and optimizations of material flows and energy flows in iron and steel industry in the world are introduced in this paper. It is found that the recovery and utilization of residual energy and heat (RUREH) plays an important role for energy saving and CO2 emission reduction no matter what method is used. Although the energy cascade utilization principle is carried out, the efficiency of RUREH in China's iron and steel industry (CISI) is only about 30%-50%, while the international advanced level is higher than 90%, such as USA, Japan, Sweden, etc. An important reason for the low efficiency of RUREH in CISI is that someone ignores the thermodynamic optimization opportunities for the energy recovery or utilization equipment, such as electricity production via waste heat boiler, sintering ore sensible heat recovery, heat transfer through heat exchangers, etc. A case study of hot blast stove flue gas sensible heat recovery and utilization is presented to illustrate the viewpoint above. The results show that before the heat conductance distribution optimization, the system can realize energy saving 76.2 kgce/h, profit 68.9 yuan/h, and CO2 emission reduction 187.2 kg/h. While after the heat conductance distribution optimization, the system can realize energy saving 88.8 kgce/h, profit 92.5 yuan/h, and CO2 emission reduction 218.2 kg/h, which are, respectively, improved by 16.5%, 34.2% and 16.5% than those before optimization. Thermodynamic optimization from the single equipment to the whole system of RUREH is a vital part in the future energy conservation work in CISI. (C) 2015 Elsevier Ltd. All rights reserved.
机译:介绍了世界钢铁工业中物质流和能量流的分析与优化。研究发现,无论采用哪种方法,剩余能量和热量的回收利用都对节能和减少二氧化碳排放起着重要作用。尽管执行了能量级联利用原则,但是RUREH在中国钢铁工业(CISI)中的效率仅为30%-50%左右,而国际先进水平却超过90%,例如美国,日本,瑞典CISI中RUREH效率低的一个重要原因是有人忽视了能量回收或利用设备的热力学优化机会,例如通过废热锅炉发电,烧结矿显热回收,通过热交换器的热传递本文以热风炉烟气显热回收利用为例,说明了上述观点。结果表明,在优化热导分布之前,该系统可实现节能76.2 kgce / h,利润68.9元/ h,CO2减排187.2 kg / h。经过热传导分布优化后,该系统可实现节能88.8 kgce / h,利润92.5元/ h,CO2减排218.2 kg / h,分别比上年提高了16.5%,34.2%和16.5%。优化之前的那些。从RUREH的单个设备到整个系统的热力学优化是CISI未来节能工作的重要组成部分。 (C)2015 Elsevier Ltd.保留所有权利。

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