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中国钢铁企业高冷却比转炉冶炼典型案例:一氧化碳排放分析

Typical Case of Converter Smelting with High Cooling Ratio in Chinese Iron and Steel Enterprises: CO Emission Analysis.

作者信息

Yang Huapeng, Feng Chao, Li Yubin, Guo Feihong, Zhu Rong, Zhang Minke, Wang Xing, Du Xin, Huo Liyun, Wen Fuxin, Ren Tao, Wei Guangsheng, Liu Fuhai

机构信息

Institute for Carbon Neutrality, University of Science and Technology Beijing, Beijing 100083, China.

Institute of Steel Sustainable Technology, Liaoning Academy of Materials, Shenyang 110000, China.

出版信息

Materials (Basel). 2024 Dec 27;18(1):65. doi: 10.3390/ma18010065.

Abstract

In this study, the effects of using different scrap ratios in a converter on carbon emissions were analyzed based on life cycle assessment (LCA) theory, and the carbon emissions from the converter were evaluated with the use of coke and biochar as heating agents at high scrap ratios. In this industrial experiment, the CO emissions during the converter smelting process decreased with the increase in the scrap steel ratio. For every 1% increase in the scrap steel ratio, the carbon emissions during the steelmaking process decreased by 14.09 kgCO/t steel. Based on statistical data for the actual use of a charcoal heating agent in the converter, the relationship between the utilization coefficient of the heating agent and the scrap ratio was calculated as η=7.698×102x-2.596. When biochar was used as a converter heating agent, the scrap ratio required to achieve the lowest carbon emissions was 36%, and the converter emissions could be reduced by 172 kgCO/t·steel relative to the use of coke. The use of biochar as a converter heating agent can contribute to the elimination of 330 million tons of scrap through furnace-converter long-process steelmaking, yielding an annual reduction in CO emissions of 158 million tons.

摘要

本研究基于生命周期评价(LCA)理论,分析了转炉中使用不同废钢比时对碳排放的影响,并在高废钢比情况下,以焦炭和生物炭作为加热剂对转炉的碳排放进行了评估。在该工业试验中,转炉冶炼过程中的CO排放随着废钢比的增加而降低。废钢比每增加1%,炼钢过程中的碳排放减少14.09kgCO/t钢。根据转炉中实际使用木炭加热剂的统计数据,计算出加热剂利用系数与废钢比之间的关系为η=7.698×102x-2.596。当使用生物炭作为转炉加热剂时,实现最低碳排放所需的废钢比为36%,与使用焦炭相比,转炉排放量可减少172kgCO/t·钢。使用生物炭作为转炉加热剂,通过炉-转炉长流程炼钢每年可消纳3.3亿吨废钢,使CO排放量每年减少1.58亿吨。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36d6/11722369/f66f09502763/materials-18-00065-g001.jpg

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