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Research Progress of Hydrogen Sulfide Adsorption Based on MOFs

机译:基于MOF的硫化氢吸附的研究进度

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摘要

Adsorption method is one of the main technologies for hydrogen sulfide treatment. Developing an adsorbent with good selectivity, large adsorption capacity, stability and good regeneration is the key to the removal of hydrogen sulfide by adsorption method. Compared with the traditional adsorbents, Metal-organic frameworks (MOFs) have a large specific surface area, a variety of framework structures, adjustable pore sizes and functionality, showing significant advantages in the adsorption of hydrogen sulfide. In this paper, the research progress of hydrogen sulfide adsorption based on MOFs in recent years was summarized. The influences of pore structure and unsaturated metal sites on the hydrogen sulfide adsorption performance of MOFs were discussed, and the strategies of functionalized groups and preparation of composites were proposed to improve the hydrogen sulfide adsorption perform- ance of MOFs. Finally, the problems and challenges in the future industrial application of MOFs as low concentration hydrogen sulfide adsorbents were pointed out.
机译:吸附方法是硫化氢处理的主要技术之一。开发具有良好选择性,大吸附能力,稳定性和良好再生的吸附剂是通过吸附方法去除硫化氢的关键。与传统的吸附剂相比,金属有机框架(MOF)具有较大的特定表面积,各种框架结构,可调节的孔径和功能,在硫化氢的吸附方面具有显着优势。在本文中,总结了基于MOF的硫化氢吸附的研究进展。讨论了孔结构和不饱和金属位点对MOF硫化氢吸附性能的影响,并提出了功能化基团的策略和复合材料的制备以改善MOF的硫化氢吸附性能。最后,指出了低浓度的硫化物吸附剂,将来的工业应用中的问题和挑战被指出。

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