A novel amino-functionalized Bio-MOF for trace SO2 adsorption under dry and humid conditions

Laigang Hu, Min Hu, Mengxue Zhang, Weiwei Wang, Ling Jiang, Wenhao Wu, Daohui Lin, Kun Yang

科研成果: 期刊稿件文章同行评审

摘要

Sulfur dioxide (SO2) adsorption, from the exhaust gas of the industrial processes and vehicles, remains an issue due to the corrosive nature of SO2. Herein, a novel amino-functionalized bio-derived metal–organic framework, named Bio-ZJU-928(Ni), comprises “paddle-wheel” shaped nickel secondary building unit, acetic acid ligand, and adenine with amino group. It exhibits excellent chemical-thermal stability, specific surface area (634 m2 g−1), outstanding trace SO2 adsorption (2.94 mmol g−1) at 0.002 bar and 273 K, and good cyclical SO2 adsorption–desorption performance. Bio-ZJU-928(Ni) also has excellent SO2 selectivity adsorption, identified by its higher ideal adsorption solution theory values for SO2/N2 (32,145) and SO2/CO2 (259.35) at 10/90 (v/v) and 273 K, respectively. Under relative humidity (50 %), the dynamic SO2 adsorption of Bio-ZJU-928(Ni) is 32.47 cm3 g−1, which is higher than that of Bio-ZJU-928(Ni) under dry condition (23.08 cm3 g−1) at the mixture gases (N2/CO2/O2/SO2 = 81.8:15:3:0.2). The enhanced SO2 adsorption of Bio-ZJU-928(Ni) can be ascribed to the O=S=O···H − O hydrogen bond formed with water, as verified by in situ diffuse reflectance infrared Fourier transform spectroscopy and Grand canonical Monte Carlo simulations.

源语言英语
文章编号133798
期刊Separation and Purification Technology
376
DOI
出版状态已出版 - 14 12月 2025
已对外发布

指纹

探究 'A novel amino-functionalized Bio-MOF for trace SO2 adsorption under dry and humid conditions' 的科研主题。它们共同构成独一无二的指纹。

引用此