Assessment of the risks of using hydrogen instead of carbon-containing fuels in the ferrous metallurgy

E. A. Alabushev, I. Bersenev, V. V. Bragin, A. Stepanova
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引用次数: 2

Abstract

The Paris Agreement, adopted in December of 2015 at the 21st session of the UNFCCC Conference of the Parties and effected from November of 2016, coordinates the efforts of states to reduce greenhouse gas (GHG) emissions, including carbon dioxide. One of its largest emitters to the atmosphere is the metallurgical industry. Among the proposed ways to reduce carbon dioxide emissions is the widespread use of hydrogen in the ferrous metallurgy. An overview of the problems that the ferrous metallurgy will face when replacing carbon-containing fuels with hydrogen is presented. It was noted that the use of hydrogen in the ferrous metallurgy contains such technological risks as high cost in comparison with currently used fuels and reducing agents; explosion hazard and corrosion activity, the need for a radical reconstruction of thermal units when using hydrogen instead of traditional for the ferrous metallurgy natural, coke and blast furnace gases, as well as solid fuels. It is shown that minimizing these risks is not always possible or economically feasible, and the result of using hydrogen in the ferrous metallurgy instead of carbon-containing fuel from the point of view of reducing greenhouse gas emissions may be low with a significant increase of economic and social risks.
铁冶金用氢代替含碳燃料的风险评估
《巴黎协定》于2015年12月在《联合国气候变化框架公约》第21次缔约方会议上通过,并于2016年11月生效,旨在协调各国减少温室气体(GHG)排放的努力,包括二氧化碳。其最大的大气排放者之一是冶金工业。提出的减少二氧化碳排放的方法之一是在铁冶金中广泛使用氢。概述了含氢燃料替代含碳燃料后,黑色冶金将面临的问题。有人指出,与目前使用的燃料和还原剂相比,在铁冶金中使用氢具有技术风险,如成本高;爆炸危险和腐蚀活性,需要彻底改造热装置时,使用氢代替传统的有色金属冶金的天然,焦炭和高炉煤气,以及固体燃料。研究表明,将这些风险最小化并不总是可能的或经济上可行的,从减少温室气体排放的角度来看,在黑色冶金中使用氢代替含碳燃料的结果可能很低,但经济和社会风险显著增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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