State Key Joint Laboratory of Environment Simulation and Pollution Control (SKLESPC), School of Environment, Tsinghua University, Beijing 100084, China.
Tsinghua-Rio Tinto Joint Research Centre for Resources, Energy and Sustainable Development, International Joint Laboratory on Low Carbon Clean Energy Innovation, Laboratory for Low Carbon Energy, Tsinghua University, Beijing 100084, China.
Environ Sci Technol. 2023 Jul 25;57(29):10501-10511. doi: 10.1021/acs.est.3c01289. Epub 2023 Jul 13.
Given the urgency of addressing climate change and the declining demand for steel, it is imperative that China's iron and steel industry begin phasing out its primary production facility, the blast furnace. While there are various studies examining the decarbonization pathways for this sector and the resulting impacts, research exploring how to design decarbonization pathways that consider economic, environmental, and regional aspects equally is lacking. Moreover, it remains unclear how the individual heterogeneity of facilities affects the effectiveness of climate policies. In this study, we address the aforementioned research gaps by proposing a novel strategy that takes into account economic, carbon, water, and health factors in determining the priority for the closure of China's blast furnaces. We developed a bottom-up framework that incorporates a facility-level data set, a stock-driven dynamic material analysis, and retirement metrics with uncertain parameters to measure the multidimensional impacts of various phaseout pathways for China's blast furnaces. We have identified potential pathways that can improve environmental efficiency in multiple aspects compared with the cost-minimization pathway without impeding regional equality.
鉴于应对气候变化的紧迫性和钢铁需求的下降,中国的钢铁行业必须逐步淘汰其主要生产设施——高炉。虽然有各种研究探讨了该行业的脱碳途径及其带来的影响,但缺乏研究如何设计同时考虑经济、环境和地区因素的脱碳途径。此外,设施的个体异质性如何影响气候政策的效果仍不清楚。在这项研究中,我们通过提出一种新策略来解决上述研究空白,该策略考虑了经济、碳、水和健康因素,以确定中国高炉关闭的优先级。我们开发了一个自下而上的框架,该框架结合了设施层面的数据、库存驱动的动态物质分析以及带有不确定参数的退休指标,以衡量中国高炉各种淘汰途径的多维影响。我们已经确定了一些潜在的途径,与成本最小化途径相比,这些途径可以在不影响区域平等的情况下,在多个方面提高环境效率。