Assessment of carbon footprint of steel production technology at aluminum application for iron oxides reducing

V. Lisienko, Yu. N. Chesnokov, A. Lapteva
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Abstract

The XXIst conference on climate, held in Paris in 2015, set coordination of efforts of all the countries as an object to reduce greenhouse gases emissions. To realize the conference decisions, it is necessary to implement technologies ensuring reduction of carbon dioxide forming in every industry. Steel industry is one of its sources. A proposed in publications technology of production of carbon-free steel for nuclear power engineering, based on reducing of iron oxides by aluminum in the process of melting considered. As per authors opinion, since the carbon of coke was excluded out of the process of steel production by the technology, it results in exclusion of greenhouse gases emissions. The purpose of the work was to assess the carbon footprint of the technology taking into account emissions of carbon-containing gases in the previous processes. It was shown that steel production by the analyzed technology with metallic aluminum application for iron oxides reduction has a rather considerable carbon footprint despite the practical absence of carbon dioxide emissions directly in the process of its smelting. It is caused by a large volume of greenhouse gases emissions in the neighbored sectors of production of energy, raw materials and materials used for steel production and exceeds 4500 kg of carbon dioxide per 1 t of steel smelted by the technology. To assess the value of carbon footprint at creation of new and perfection of existing technological processes of goods production in ferrous metallurgy and other industries of economy, it was proposed to take into account its value along the whole chain of previous and neighbored production sectors.
钢铁生产工艺碳足迹评价在铝应用中的铁氧化物还原
2015年在巴黎举行的第21届气候大会将协调所有国家的努力作为减少温室气体排放的目标。为了实现会议的决定,有必要在每个行业实施确保减少二氧化碳形成的技术。钢铁工业是其来源之一。提出了一种以铝在熔融过程中还原氧化铁为基础的核电工程用无碳钢生产技术。作者认为,由于该技术将焦炭中的碳排除在炼钢过程之外,因此可以排除温室气体的排放。这项工作的目的是评估该技术的碳足迹,同时考虑到以前工序中含碳气体的排放。结果表明,采用金属铝还原氧化铁的技术生产钢铁,尽管在冶炼过程中没有直接的二氧化碳排放,但其碳足迹相当可观。这是由于邻近的能源、原材料和钢铁生产材料生产部门排放大量温室气体造成的,该技术每冶炼1吨钢铁,二氧化碳排放量超过4500公斤。为了评估碳足迹在黑色冶金和其他经济行业中创造新的和完善现有产品生产技术流程时的价值,建议考虑其沿先前和相邻生产部门的整个链条的价值。
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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