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Comprehensive evaluation on energy-water saving effects in iron and steel industry

机译:钢铁行业节能节水效果综合评价

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The production of iron and steel is energy-intensive that motivated the emergence of various energy-saving technologies to reduce energy consumption. However, the effects of water-saving brought by these energy-saving technologies are rarely examined which can lead to misevaluation of their economic feasibility. In this regard, material flow analysis (MFA) was used in this study to establish the water-energy nexus and examine the potential of water-saving and energy-saving effects in the condition of applying various mixes of the 16 technologies (Ministry of Industry and Information Technology, 2015-2016) in iron and steel industry. Meanwhile, this study classified the selected 16 energy-saving technologies into three groups: direct water-saving technology, indirect water-saving technology, and water consumption technology. The low-temperature steel rolling technology is the only water-consuming energy-saving technology in this study; its indirect specific water computation reaches 0.06 m(3)/t. The remaining 15 energy-saving technologies have the potential of saving water indirectly, with averaged indirect specific water-saving amounting to 0.28 m(3)/t. This study also built an evaluation scheme of cost-benefit analysis for energy-saving technologies. With consideration of benefits brought by water saving, eleven technologies have the potential to achieve economic feasibility compared to nine in which mere energy-saving effects being considered. The results show that if the studied 16 technologies are implemented simultaneously, the comprehensive specific energy consumption will be reduced by 4.28 MJ, and the specific fresh water consumption will be reduced by 0.68 m(3). Meanwhile, this research found that the cost of most energy-saving technologies will be decreased by an average of 5.52 CNY/GJ, despite the cost of low-temperature steel rolling technology increased by 0.68 CNY/GJ. This study evaluated the cost-effectiveness of energy-saving technologies taking the benefits of water conservation into consideration. It could provide references for decision-makers to develop commercialization strategies on energy saving technologies in the steel industry. (C) 2019 Elsevier B.V. All rights reserved.
机译:钢铁的生产是能源密集型的,因此推动了各种节能技术的出现,以降低能耗。但是,很少研究这些节能技术带来的节水效果,这可能导致对其经济可行性的错误评估。在这方面,本研究使用物质流分析(MFA)建立了水能关系,并研究了在应用16种技术的各种混合条件下节水和节能效果的潜力(工业部和信息技术,2015-2016年)。同时,本研究将选定的16种节能技术分为三类:直接节水技术,间接节水技术和耗水技术。低温轧钢技术是本研究中唯一的耗水节能技术。其间接比水计算达到0.06 m(3)/ t。其余15种节能技术具有间接节水的潜力,平均间接比节水量平均为0.28 m(3)/ t。这项研究还建立了节能技术成本效益分析评估方案。考虑到节水带来的好处,与仅考虑节能效果的九种技术相比,十一种技术具有实现经济可行性的潜力。结果表明,如果同时实施所研究的16种技术,则综合比能耗将降低4.28 MJ,比淡水消耗将降低0.68 m(3)。同时,本研究发现,尽管低温钢轧制技术的成本增加了0.68元/ GJ,但大多数节能技术的成本将平均降低5.52元/ GJ。这项研究考虑了节水的好处,评估了节能技术的成本效益。它可以为决策者制定钢铁行业节能技术的商业化策略提供参考。 (C)2019 Elsevier B.V.保留所有权利。

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