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Decarbonising the cement sector: a bottom-up model for optimising carbon capture application in the UK

机译:对水泥行业进行脱碳:在英国优化碳捕获应用的自下而上模型

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摘要

Industrial processes such as Portland cement manufacture produce a large proportion of anthropogenic carbon dioxide and significantly reducing their emissions could be difficult or expensive without carbon capture and storage. This paper explores the idea of synchronising shutdowns for carbon capture and storage installation with major shutdowns required to refurbish major process units at industrial sites. It develops a detailed bottom-up model for the first time and applies it to the United Kingdom’s cement industry. This research demonstrates that several policy and technology risks are not identified by the top-down models and it highlights the importance of reducing shut-down times for capture plant construction. Failure to do so could increase installation costs by around 10 per cent. This type of approach, which is complementary to top-down modelling, and the lessons learned from it can be applied to other capital- and energy-intensive industries such as primary steel production. It provides important information about what actions should be prioritised to ensure that carbon capture and storage can be applied without extra unnecessary shutdowns which would increase the overall cost of carbon dioxide mitigation and could delay action, increasing cumulative emissions as well.
机译:波特兰水泥生产等工业过程会产生大量的人为二氧化碳,如果不进行碳捕集与封存,大幅降低其排放量将是困难或昂贵的。本文探讨了将碳捕集和封存安装的停机与翻新工业现场主要工艺装置所需的停机相同步的想法。它首次开发了一种自下而上的详细模型,并将其应用于英国的水泥行业。这项研究表明,自上而下的模型无法识别出几种政策和技术风险,并且强调了减少捕集工厂建设的停机时间的重要性。否则,安装成本可能会增加约10%。这种方法是自上而下建模的补充,可以从中吸取教训,将其应用于其他资本和能源密集型行业,例如初级钢铁生产。它提供了重要信息,说明应优先考虑哪些操作,以确保无需额外的不必要停机即可应用碳捕获和存储,这将增加二氧化碳减排的总体成本,并可能延迟行动,增加累积排放量。

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