TY - JOUR
T1 - A novel amino-functionalized Bio-MOF for trace SO2 adsorption under dry and humid conditions
AU - Hu, Laigang
AU - Hu, Min
AU - Zhang, Mengxue
AU - Wang, Weiwei
AU - Jiang, Ling
AU - Wu, Wenhao
AU - Lin, Daohui
AU - Yang, Kun
N1 - Publisher Copyright:
© 2025 Elsevier B.V.
PY - 2025/12/14
Y1 - 2025/12/14
N2 - 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.
AB - 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.
KW - Adsorption
KW - Amino-functionalized
KW - Bio-MOF
KW - Dry and humid condition
KW - SO
UR - http://www.scopus.com/inward/record.url?scp=105007460835&partnerID=8YFLogxK
U2 - 10.1016/j.seppur.2025.133798
DO - 10.1016/j.seppur.2025.133798
M3 - 文章
AN - SCOPUS:105007460835
SN - 1383-5866
VL - 376
JO - Separation and Purification Technology
JF - Separation and Purification Technology
M1 - 133798
ER -