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Simulation-based life cycle assessment of ferrochrome smelting technologies to determine environmental impacts

机译:基于模拟的铬铁冶炼技术的生命周期评估,以确定环境影响

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摘要

Decarbonization of metal production is currently a unique challenge for the industry. To gain insights, environmental impacts of ferrochrome smelting technologies were estimated using simulation-based life cycle assessment. Two leading technologies: (1) Steel Belt Sintering-Submerged Electric Arc Furnace (SBS-SAF), and (2) Rotary Kiln-Submerged Electric Arc Furnace (RK-SAF) were investigated. Four environmental impact categories: climate change, acidification, particulate matter, and resource use (minerals and metals), were considered. Results showed that GHG emissions for producing high carbon ferrochrome vary to a greater extent depending on location of processing plant because of differences in electricity emission factors. For example, South African energy grid generates more GHG emission than Finnish energy grid. Furthermore, though prereduction reduced SAF energy consumption, it did not necessarily result in reduced net GHG emissions due to high coal consumption of RK. Acidification and particulate matter were higher when using RK-SAF technology. Ferrochrome production generally had low impact on resource use.(c) 2021 Elsevier Ltd. All rights reserved.
机译:金属生产的脱碳是目前行业的独特挑战。为了获得见解,利用基于仿真的生命周期评估估算铬罗姆冶炼技术的环境影响。两种领先技术:(1)钢带烧结浸没式电弧炉(SBS-SAF),和(2)旋转窑淹没电弧炉(RK-SAF)进行了研究。四种环境影响类别:审议气候变化,酸化,颗粒物和资源使用(矿物质和金属)。结果表明,由于电力排放因子的差异,在更大程度上产生高碳铬铁的温室气体排放在更大程度上变化。例如,南非能源网格比芬兰能量电网产生更高的气体排放。此外,虽然预防措施减少了SAF能耗,但由于RK的高煤炭消耗,它并不一定导致净温室气体排放量减少。使用RK-SAF技术,酸化和颗粒物质较高。铬铁生产一般对资源使用影响较低。(c)2021 Elsevier Ltd.保留所有权利。

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