TY - JOUR
T1 - A Novel Ni/NiF 2 -AlF 3 Catalyst with Mild-Strength Lewis Acid Sites for Dehydrofluorination of 1, 1, 1, 2-Tetrafluoroethane to Synthesize Trifluoroethylene
AU - Xi, Zhiwen
AU - Liu, Xing
AU - Li, Junhui
AU - Yuan, Juanjuan
AU - Jia, Wenzhi
AU - Liu, Xinhua
AU - Liu, Min
AU - Zhu, Zhirong
N1 - Publisher Copyright:
© 2019 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim
PY - 2019/4/24
Y1 - 2019/4/24
N2 - A novel Ni/NiF 2 -AlF 3 catalyst was prepared by impregnation and following vapor hydrofluorination, and it was used to dehydrofluorination of tetrafluoroethane to trifluoroethylene. BET, SEM, XRD, XPS, NH 3 -TPD and Py-IR techniques were employed to characterize the Ni/NiF 2 -AlF 3 catalysts. Based on the NH 3 -TPD results, it was interestingly found that the strong acidic sites of Ni/NiF 2 -AlF 3 catalyst transformed into the mid-strength acidic sites with the increase of Ni loading, attributing to the roles of Ni on the catalyst surface. Compared with the NiF 2 -AlF 3 catalyst, the added Ni particles can improve the catalyst activity and stability for dehydrofluorination of 1, 1, 1, 2-tetrafluoroethane. The best performance was obtained at Al/Ni=2 over the Ni/NiF 2 -AlF 3 catalyst, with high trifluoroethylene selectivity(99%) and CF 3 CFH 2 conversion of 21.3%, after the reaction for 20 h on-time stream at 500 °C, which showed the better application possibility as a heterogeneous dehydrofluorination catalyst. It was suggested that catalytic performance was related with the mid-strength Lewis acidity on the catalyst surface. And the Ni/NiF 2 -AlF 3 catalyst (Al/Ni=2) possessed the good catalytic stability due to the mild-strength Lewis acid sites.
AB - A novel Ni/NiF 2 -AlF 3 catalyst was prepared by impregnation and following vapor hydrofluorination, and it was used to dehydrofluorination of tetrafluoroethane to trifluoroethylene. BET, SEM, XRD, XPS, NH 3 -TPD and Py-IR techniques were employed to characterize the Ni/NiF 2 -AlF 3 catalysts. Based on the NH 3 -TPD results, it was interestingly found that the strong acidic sites of Ni/NiF 2 -AlF 3 catalyst transformed into the mid-strength acidic sites with the increase of Ni loading, attributing to the roles of Ni on the catalyst surface. Compared with the NiF 2 -AlF 3 catalyst, the added Ni particles can improve the catalyst activity and stability for dehydrofluorination of 1, 1, 1, 2-tetrafluoroethane. The best performance was obtained at Al/Ni=2 over the Ni/NiF 2 -AlF 3 catalyst, with high trifluoroethylene selectivity(99%) and CF 3 CFH 2 conversion of 21.3%, after the reaction for 20 h on-time stream at 500 °C, which showed the better application possibility as a heterogeneous dehydrofluorination catalyst. It was suggested that catalytic performance was related with the mid-strength Lewis acidity on the catalyst surface. And the Ni/NiF 2 -AlF 3 catalyst (Al/Ni=2) possessed the good catalytic stability due to the mild-strength Lewis acid sites.
KW - 1, 1, 1, 2-tetrafluoroethane
KW - Dehydrofluorination
KW - Lewis acid sites
KW - Ni/NiF -AlF catalyst
UR - https://www.scopus.com/pages/publications/85064832616
U2 - 10.1002/slct.201803947
DO - 10.1002/slct.201803947
M3 - 文章
AN - SCOPUS:85064832616
SN - 2365-6549
VL - 4
SP - 4506
EP - 4511
JO - ChemistrySelect
JF - ChemistrySelect
IS - 15
ER -