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CaO-Based CO2 Sorbents: From Fundamentals to the Development of New, Highly Effective Materials

机译:基于CAO的二氧化碳吸附剂:从基本上到开发新的,高效的材料

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摘要

The enormous anthropogenic emission of the greenhouse gas CO2 is most likely the main reason for climate change. Considering the continuing and indeed growing utilisation of fossil fuels for electricity generation and transportation purposes, development and implementation of processes that avoid the associated emissions of CO2 are urgently needed. CO2 capture and storage, commonly termed CCS, would be a possible mid-term solution to reduce the emissions of CO2 into the atmosphere. However, the costs associated with the currently available CO2 capture technology, that is, amine scrubbing, are prohibitively high, thus making the development of new CO2 sorbents a highly important research challenge. Indeed, CaO, readily obtained through the calcination of naturally occurring limestone, has been proposed as an alternative CO2 sorbent that could substantially reduce the costs of CO2 capture. However, one of the major drawbacks of using CaO derived from natural sources is its rapidly decreasing CO2 uptake capacity with repeated carbonation-calcination reactions. Here, we review the current understanding of fundamental aspects of the cyclic carbonation-calcination reactions of CaO such as its reversibility and kinetics. Subsequently, recent attempts to develop synthetic, CaO-based sorbents that possess high and cyclically stable CO2 uptakes are presented.
机译:温室气体二氧化碳的巨大人为排放最有可能是气候变化的主要原因。考虑到持续和确实不断利用化石燃料的发电和运输目的,避免了避免CO2相关排放的流程的开发和实施。 CO2捕获和储存通常称为CCS,是可能的中期解决方案,以将二氧化碳排放量降至大气中。然而,与目前可用的二氧化碳捕获技术相关的成本,即胺擦洗,非常高,从而使新的CO2吸附剂开发成为一个非常重要的研究挑战。实际上,通过煅烧天然存在的石灰石而容易获得CaO,已经提出作为替代二氧化碳吸附剂,其可以显着降低CO 2捕获的成本。然而,使用源自天然来源的CaO的主要缺点之一是其快速降低的CO 2摄取能力与重复的碳酸化煅烧反应。在这里,我们审查了目前对CAO循环碳酸化煅烧反应的基本方面的理解,例如其可逆性和动力学。随后,提出了最近尝试开发合成的CaO基吸附剂,其具有高且循环稳定的CO2上身。

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