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Cryogenic-based CO_2 capture technologies: State-of-the-art developments and current challenges

机译:基于低温的CO_2捕集技术:最新发展和当前挑战

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CO2 capture, utilization and storage has been recognized as a primary option to mitigate the issue of climate change caused by the utilization of fossil fuels. Several CO2 capture strategies have been developed, such as absorption, adsorption, membrane, chemical looping, hydrating and biofixation. Among different technologies, particular attention has been given to cryogenic CO2 capture by phase change. The aim of this study is to improve interest in cryogenic technologies for CO2 capture by providing an overview of the actual status of CCS. To reach this goal, the major strategies and technologies for CO2 capture from fossil fuel combustion have been reviewed. Simultaneously, the characteristics of cryogenic technologies for CO2 capture are summarized. The existing challenges that need to be overcome in cryogenic technology include cold energy sources, capture costs and impurities, etc. Finally, opportunities for the future development of cryogenic-based technologies are discussed. The results of this investigation indicated that cryogenic CO2 capture processes can be easily retrofitted to the existing industrial emission facilities and avoid the challenges associated with chemical solvents or physical sorbents.
机译:二氧化碳的捕集,利用和封存已被认为是减轻由化石燃料利用引起的气候变化问题的主要选择。已经开发了几种二氧化碳捕获策略,例如吸收,吸附,膜,化学环化,水合和生物固定。在不同的技术中,已经特别关注了通过相变捕获低温二氧化碳的方法。这项研究的目的是通过概述CCS的实际状况来提高对CO2捕集低温技术的兴趣。为了实现这一目标,已经审查了从化石燃料燃烧中捕获二氧化碳的主要策略和技术。同时,总结了低温捕集二氧化碳技术的特点。低温技术中需要克服的现有挑战包括冷能源,捕获成本和杂质等。最后,讨论了基于低温技术的未来发展机会。这项调查的结果表明,低温CO2捕集工艺可以轻松地改造为现有的工业排放设施,并避免了化学溶剂或物理吸附剂带来的挑战。

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