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印度钢铁行业高炉-转炉工艺路线的过程级排放分析与脱碳途径

Process-level emission analysis and decarbonization pathway for BF-BOF route in Indian iron and steel industry.

作者信息

Tikadar Biswajit, Swami Deepika, Chowdhary Vaibhav

机构信息

Department of Sustainable Energy Engineering, Indian Institute of Technology Kanpur, Kanpur, India.

Chandrakanta Kesavan Center for Energy Policy and Climate Solutions, IIT Kanpur, Kanpur, India.

出版信息

J Environ Manage. 2025 Jan;373:123483. doi: 10.1016/j.jenvman.2024.123483. Epub 2024 Dec 1.

Abstract

The blast furnace-basic oxygen furnace (BF-BOF) route contributes 46% to the production of iron and steel in India and is highly energy and emission-intensive. Its decarbonization needs to be prioritized for reducing long-term climate-related impacts. So far, studies have assessed the macro-level carbon emission and energy consumption of the entire industry (encompassing all production routes i.e., BF-BOF, EAF, DRI, SR-BOF, etc.), and lacks the specific plan for decarbonization of plants based on BF-BOF route. Secondly, these studies have focused on just a single input (raw material, energy, fuel, etc.) and the respective output (steel) and lack the analysis of detailed process-wise material and energy flow and consideration of fugitive emissions, which is needed for emission mitigation of entire BF-BOF based plants, which produces 57.37 million tons of crude steel in India. The current study addresses this gap through a case study of a BF-BOF-based plant by comprehensively analyzing the material and energy flow for each production step followed by assessing the respective carbon emissions. Further, a marginal abatement cost curve (MACC) is developed to identify the process-wise cost-effective mitigation measures. The current study shows that the implementation of proposed measures can significantly reduce carbon emissions from 3.3 to 2.43 tCO/tcs, making it equal to the global counterparts.

摘要

高炉-碱性氧气转炉(BF-BOF)路线在印度钢铁生产中占比46%,且能源和排放密集度高。为减少长期气候相关影响,其脱碳需列为优先事项。到目前为止,研究评估了整个行业(涵盖所有生产路线,即BF-BOF、电弧炉、直接还原铁、竖炉-碱性氧气转炉等)的宏观层面碳排放和能源消耗,缺乏基于BF-BOF路线的工厂脱碳具体计划。其次,这些研究仅关注单一输入(原材料、能源、燃料等)和相应产出(钢铁),缺乏对详细的逐流程物料和能量流的分析以及对无组织排放的考虑,而这对于印度年产5737万吨粗钢的整个基于BF-BOF的工厂的排放缓解是必要的。本研究通过对一家基于BF-BOF的工厂进行案例研究来填补这一空白,全面分析每个生产步骤的物料和能量流,然后评估相应的碳排放。此外,还绘制了边际减排成本曲线(MACC)以确定逐流程具有成本效益的缓解措施。本研究表明,实施所提议的措施可将碳排放从3.3吨二氧化碳/吨粗钢显著降至2.43吨二氧化碳/吨粗钢,使其与全球同行相当。

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