Decomposition of formic acid over Ni-containing SiO2 catalysts synthesized by various one-pot synthesis routes

被引:0
作者
Dilsad Dolunay Eslek Koyuncu
Nisa Ozben
Nuray Oktar
Kirali Murtezaoglu
机构
[1] Gazi University,Department of Chemical Engineering
来源
Reaction Kinetics, Mechanisms and Catalysis | 2023年 / 136卷
关键词
Hydrogen production; Gas-phase; Formic acid decomposition; One-pot synthesis; SiO; Nickel;
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摘要
In this study SiO2 supported catalysts with different nickel amounts [5Ni–SiO2 (P123), 2,5Ni–SiO2 (P123), 5Ni–SiO2 (NH3-CA), 5Ni–SiO2 (Tw80–NaF) and 5Ni–SiO2 (Tw80)] were synthesized with four different one-pot synthesis routes. These catalysts were characterized by XRD, ATR/FT–IR, SEM–EDS, N2 adsorption–desorption analysis and tested for hydrogen production from catalytic gas-phase decomposition of formic acid. XRD and ATR/FT-IR results confirmed the presence of a metallic Ni phase in the catalysts. It was seen that the catalysts synthesized with surfactant Pluronic 123 (P123) exhibited the highest surface area. The N2 adsorption–desorption isotherms of the catalysts other than 5Ni–SiO2 (Tw80–NaF) were consistent with Type IV according to the IUPAC classification. Pore structure deterioration was observed in catalysts synthesized using Tw80–NaF and synthesized by the surfactant-free one-pot method [5Ni–SiO2 (NH3-CA)]. The highest H2 selectivity was observed at 350 °C for empty reactor and it was decided to conduct the activity test studies of the catalysts at this temperature. All catalysts exhibited complete formic acid conversion at 350 °C. The Lewis acidity order of the catalysts was found to be 2.5Ni–SiO2 (P123) > 5Ni–SiO2 (Tw80) > 5Ni–SiO2 (NH3-CA) > 5Ni–SiO2 (P123). The highest H2 concentration and selectivity were obtained with the 5Ni–SiO2 (P123) catalyst. As a result, it was determined that the acidic-basic property of the catalyst may be more dominant than the other properties (pore properties, surface area, Ni crystallite size) on the catalytic activity in hydrogen production from formic acid.
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页码:2569 / 2586
页数:17
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  • [21] Fodor D(2022)Steam reforming of ethanol with zirconia incorporated mesoporous silicate supported catalysts Arab J Chem 48 2628-15466
  • [22] Brown MA(2023)Syngas production from methane dry reforming over Ni/SBA-15 catalyst: effect of operating parameters Int J Hydrogen Energy 16 472-173
  • [23] Van Bokhoven JA(2023)Ni anchored C React Mater 629 118419-617
  • [24] Hu C(2022)N monolayers as low-cost and efficient catalysts for hydrogen production from formic acid Appl Catal A 12 1022-10
  • [25] Ting SW(2022)Relationship between the pore structure of mesoporous silica supports and the activity of nickel nanocatalysts in the CO Catalysts 92 86-566
  • [26] Tsui J(2017) reforming of methane Catal Commun 115 15459-202
  • [27] Chan KY(2011)An efficient CoAuPd/C catalyst for hydrogen generation from formic acid at room temperature J Phys Chem C 147 166-681
  • [28] Wang ZL(2017)Silver-Cobalt bimetallic nanoparticles to the generation of hydrogen from formic acid decomposition Energy Convers Manag 264 8478-230
  • [29] Ping Y(2020)Microstructure and activity of Pd catalysts prepared on commercial carbon support for the liquid phase decomposition of formic acid Appl Catal B 34 601-135
  • [30] Yan JM(1999)Formic acid dehydrogenation over Ru-and Pd-based catalysts: gas-vs liquid-phase Clay Miner 317 1-549