王新东, 上官方钦, 邢奕, 侯长江, 田京雷. “双碳”目标下钢铁企业低碳发展的技术路径[J]. 工程科学学报, 2023, 45(5): 853-862. DOI: 10.13374/j.issn2095-9389.2022.09.22.003
引用本文: 王新东, 上官方钦, 邢奕, 侯长江, 田京雷. “双碳”目标下钢铁企业低碳发展的技术路径[J]. 工程科学学报, 2023, 45(5): 853-862. DOI: 10.13374/j.issn2095-9389.2022.09.22.003
WANG Xin-dong, SHANGGUAN Fang-qin, XING Yi, HOU Chang-jiang, TIAN Jing-lei. Research on the low-carbon development technology route of iron and steel enterprises under the “double carbon” target[J]. Chinese Journal of Engineering, 2023, 45(5): 853-862. DOI: 10.13374/j.issn2095-9389.2022.09.22.003
Citation: WANG Xin-dong, SHANGGUAN Fang-qin, XING Yi, HOU Chang-jiang, TIAN Jing-lei. Research on the low-carbon development technology route of iron and steel enterprises under the “double carbon” target[J]. Chinese Journal of Engineering, 2023, 45(5): 853-862. DOI: 10.13374/j.issn2095-9389.2022.09.22.003

“双碳”目标下钢铁企业低碳发展的技术路径

Research on the low-carbon development technology route of iron and steel enterprises under the “double carbon” target

  • 摘要: 为落实国家“碳达峰、碳中和”发展目标,解决钢铁行业低碳发展过程中面临的瓶颈和难题,展开了一系列政策、技术和行动方案的研究。对比国内外钢铁企业碳排放强度的现状及变化趋势,分析了引起碳排放强度差异性的原因,并给出我国钢铁工业“碳达峰、碳中和”发展的总体方向。解析了中国钢铁工业及国内大型钢铁企业的“碳达峰、碳中和”目标及实施方案,并重点基于某大型钢铁企业当前生产、装备、工艺流程、碳排放实际情况,在充分考虑了未来产能装备、工艺变革、技术创新、能源转型等方面规划的基础之上,制定了具体的低碳发展技术路线图,为我国钢铁企业落实国家“碳达峰、碳中和”目标提供了示范和引领。路线图指出,该企业低碳发展将经历“碳达峰平台期、稳步下降期及深度脱碳期”三个阶段,通过实施铁素资源优化、流程优化重构、系统能效提升、用能结构优化、低碳技术变革、产业耦合降碳六大技术路径,建设碳排放数据管理体系及钢铁产品全生命周期(LCA)碳足迹两大平台,实现2025年碳排放总量较峰值降低10%,2030年碳排放总量较峰值降低30%,最终在2050年实现碳中和,并详细阐明了该企业对各技术路径的规划目标,测算了各减碳技术路径实施后带来的碳减排量期望值,比较了不同技术路径在不同发展阶段所带来的减碳效果。最后,结合该企业低碳发展技术路线图的制定和实施过程,提出我国钢铁企业低碳发展的建议。

     

    Abstract: To implement the national development goal of “carbon peak, carbon neutral” and address the bottlenecks and challenges encountered by the steel industry in the process of moving toward low-carbon development, a series of studies on policies, technologies, and action plans has been conducted. Given the current situation and changing trend of carbon dioxide emission intensity of domestic and foreign iron and steel enterprises, the reasons for the different intensities of carbon dioxide emissions were analyzed. Further, general directions for carbon dioxide emission peak and carbon dioxide neutralization development in the Chinese iron and steel industry were provided. This study also analyzed the “carbon peak, carbon neutral” targets and implementation plans of the Chinese iron and steel industry and large domestic steel enterprises. The study mainly assessed the current production, current equipment used, technological process, and actual case of carbon dioxide emissions of a large iron and steel enterprise. Future changes in production equipment, production process evolution, technological innovation, and energy transformation based on planning aspects were fully considered in this analysis. A concrete technology roadmap of low-carbon development was made for Chinese iron and steel enterprises as a guide in implementing the national goal of “carbon peak, carbon neutralization.” This roadmap emphasizes that the enterprise will encounter three stages: carbon peak stage platform, steadily declining period, and depth of decarburization. It suggests the consideration of the following: implementing six technical development path that iron element resource optimization, process optimization reconstruction, system efficiency promotion, energy structure optimization, great progress in low-carbon technology, coupling between industries, and constructing a data management system for carbon dioxide emissions, and constructing carbon footprint platforms for the full life-cycle assessment (LCA) of steel products. The analysis found that the total carbon dioxide emissions in 2025 and 2030 will be reduced by 10% and 30%, respectively, and carbon dioxide neutrality will be achieved in 2050. Additionally, the plans of enterprises for their technological paths are clarified. The expected reduction in carbon emissions owing to the implementation of each technological path toward carbon dioxide reduction is calculated. The carbon reduction effects of different technological paths are compared in various development stages. Finally, combined with the establishment and execution process of the low-carbon development technology roadmap of enterprises, some suggestions on the low-carbon development of Chinese iron and steel enterprises are provided.

     

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