黏土矿物捕集CO2研究进展

Research Progress on Clay Mineral−based Adsorbents for CO2 Capture

  • 摘要: 黏土矿物因资源丰富、成本低廉、结构可调,在CO2捕集领域展现出良好应用前景。系统梳理了近年来黏土矿物在CO2捕集领域的研究进展,重点阐述了酸碱预处理、金属离子掺杂、离子液体负载、柱撑改性以及有机复合与杂化材料构建等改性方法对黏土矿物结构与吸附性能的影响。在此基础上,重点评述了胺官能化黏土矿物吸附剂的研究进展,系统比较了浸渍法、接枝法和直接合成法三种胺功能化策略,并分别综述了胺改性蒙脱石、高岭石和埃洛石在CO2吸附容量、选择性及循环稳定性方面的性能特点与作用机理。最后,针对当前材料在胺基分散、结构稳定性与规模化应用方面的挑战,展望了通过多机制协同改性、绿色可控制备和结构优化设计实现高效、低能耗CO2捕集的发展路径,为黏土矿物的高值化利用与温室气体减排提供参考。

     

    Abstract: Clay minerals are promising candidates for CO2 capture owing to their natural abundance, low cost, and structurally tunable properties. This review provides a systematic overview of recent advances in clay mineral−based adsorbents for CO2 capture. Key modification strategies, including acid/base treatment, metal ion doping, ionic liquid incorporation, pillar intercalation, and the synthesis of organic–inorganic hybrid composites, are examined in terms of their impacts on the structure and adsorption behavior of clay minerals. Special emphasis is placed on amine−functionalized clay adsorbents, with a comparative analysis of three main functionalization approaches: impregnation, grafting, and direct synthesis. The CO2 adsorption performance, selectivity, and cycling stability of amine−modified montmorillonite, kaolinite, and halloysite are discussed along with their underlying mechanisms. Finally, current challenges related to amine dispersion, structural stability, and scalable application are addressed. Perspectives are offered on achieving efficient and low−energy CO2 capture through synergistic modification strategies, green synthesis routes, and rational structural design. This work aims to inform the high−value utilization of clay minerals and contribute to practical solutions for greenhouse gas mitigation.

     

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