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Updated: Jan 13, 2026

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Measurement of Outgassing Rates of Steels
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钢铁生产中的技术效率与环境效率:全球视角
Giacomo Benini1, Erik Enstad1, Amare Alemaye Mersha2
1Norwegian School of Economics, Department of Business & Management Science, Helleveien 30, 5045, Bergen, Norway.
Journal of environmental management
|January 9, 2026
概括
全球钢铁厂的效率和削减成本各不相同. 技术上高效的工厂面临更高的成本,而低效的工厂则面临更低的成本,这表明需要量身定制的气候政策.
科学领域:
- 环境科学 环境科学
- 工业生态学 工业生态学
- 能源经济学 能源经济学
背景情况:
- 钢铁生产是全球主要的二氧化碳排放者.
- 评估工厂一级的效率和减排成本对于气候政策至关重要.
- 现有的数据往往缺乏工厂特定的技术和环境效率指标.
研究的目的:
- 进行首次全球性的钢铁生产技术和环境效率的工厂级评估.
- 为了估计全球钢铁厂二氧化碳排放的影子价格.
- 分析工厂低效率与边际减排成本之间的关系.
主要方法:
- 利用了50个国家的143家钢铁厂 (2019-2023) 的新型微数据集.
- 应用了一个随机定向距离函数来估计生产边界距离.
- 计算了二氧化碳等效 (CO2e) 排放的影子价格.
主要成果:
- 低效率和边际减排成本之间存在负相关性.
- 高效电弧炉 (EAF) 微型机 (北美) 的低效率 (∼0.2) 和高减排成本 (高达13.4美元/).
- 低效的集成工厂 (发展中国家) 的低效率高 (高达0.8),但减排成本低 (约0.4美元/).
结论:
- 全球钢铁厂表现出不同的效率和降低成本的情况.
- 据估计,CO2e的影子价格低于市场价格,这表明在没有监管的情况下估值低.
- 气候政策必须考虑植物特定的配置,效率和脱碳能力.
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