2022
DOI: 10.1038/s41467-021-27770-y
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Decarbonising the iron and steel sector for a 2 °C target using inherent waste streams

Abstract: The decarbonisation of the iron and steel industry, contributing approximately 8% of current global anthropogenic CO2 emissions, is challenged by the persistently growing global steel demand and limitations of techno-economically feasible options for low-carbon steelmaking. Here we explore the inherent potential of recovering energy and re-using materials from waste streams, high-temperature slag, and re-investing the revenues for carbon capture and storage. In a pathway based on energy recovery and resource r… Show more

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Cited by 44 publications
(26 citation statements)
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“…61 Similarly, transforming energy-intensive, fossil fueldependent, and highly polluting industrial processes, increasingly manufactured in developing countries, is challenging too without strong economic incentives and international cooperation and coordination. 62 Key opportunities exist in consumer subsidies to improve dwelling characteristics and incentivize behavior toward larger household sizes with more densely constructed dwellings and energy-efficient appliances. 63 Opportunities also exist to realize low-energy consumption practices through innovations such as digital and artificial intelligence technologies for energy use and monitoring, 64 modern cities with energy-efficient public infrastructure, mobility systems, housing sectors, and smart grid management for long-distance power transmission and less energy loss.…”
Section: (Figures S8h-ii and S8h-iii)mentioning
confidence: 99%
“…61 Similarly, transforming energy-intensive, fossil fueldependent, and highly polluting industrial processes, increasingly manufactured in developing countries, is challenging too without strong economic incentives and international cooperation and coordination. 62 Key opportunities exist in consumer subsidies to improve dwelling characteristics and incentivize behavior toward larger household sizes with more densely constructed dwellings and energy-efficient appliances. 63 Opportunities also exist to realize low-energy consumption practices through innovations such as digital and artificial intelligence technologies for energy use and monitoring, 64 modern cities with energy-efficient public infrastructure, mobility systems, housing sectors, and smart grid management for long-distance power transmission and less energy loss.…”
Section: (Figures S8h-ii and S8h-iii)mentioning
confidence: 99%
“…Gt, Gigatonnes; BOF, Basic Oxygen Converter; EAF, electric arc furnace; OHF, open hearth furnace; 2DS, 2 °C target fixed by the Paris Agreement. Part (a) is reproduced with permission from ref . Copyright 2022, Nature.…”
Section: Element- and Alloy-specific Direct Sustainability Topicsmentioning
confidence: 99%
“…To overcome these challenges, various studies and developments have been conducted. [2][3][4][5] For instance, Sakai et al prepared latent heat storage pellets consisting of an Al-Si phase change material (PCM) and Al 2 O 3 . 4) They reported that the heat storage pellets could store high-temperature heat at approximately 850 K, which is the melting point of PCM, with a heat storage density of 73.5 kJ/kg.…”
Section: Introductionmentioning
confidence: 99%