利用HSC-SIM和OpenLCA软件包评估铬铁生产技术的碳足迹

J. Hamuyuni, H. Johto, Timo Haimi, A. Bunjaku, P. Mäkelä, L. Närhi, M. Lindgren
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引用次数: 1

摘要

减少金属生产过程中的碳足迹是目前全球减少温室气体排放的首要任务之一。特别是在铁合金生产中,碳足迹(通过二氧化碳排放)是巨大的。为了减少温室气体排放,了解不同技术的工艺步骤和整个生产链的二氧化碳贡献是必不可少的。本研究比较了两种领先技术的二氧化碳排放量,并对减少温室气体排放的最重要步骤提出了建议。在研究中,采用基于模拟的生命周期评估方法系统地量化了每种技术的排放量。模拟是使用HSC Sim (v10.0)构建的,与OpenLCA软件相连。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluating the carbon footprint of ferrochrome production technologies using HSC-SIM and OpenLCA software packages
Reducing the carbon footprint of metals production processes is currently one of the top priorities to reduce greenhouse gas (GHG) emissions globally. Especially in ferroalloy production where the carbon footprint (through CO2 emissions) is enormous. To reduce GHG emissions, understanding of the CO2 contribution of process steps and entire production chain for different technologies is imperative. This research compares the CO2 emission of two leading technologies and makes recommendations for the most important steps in reduction of GHG emissions. In the research, a simulation-based life cycle assessment methodology has been used to systematically quantify emissions of each technology. The simulations have been constructed using HSC Sim (v10.0), linked to OpenLCA software.
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