“…As shown in Table 4, the ratio of well-dispersed Ga in 5Ga 2 O 3 /ZSM-5 to 5Ga 2 O 3 /Al 2 O 3 is approximately equal to that of the strong acid peak area in the corresponding samples. This similar phenomenon was also mentioned by Ausavasukhi et al 25 In addition, a small peak at about 690 C can be noticed, which should be attributed to the reduction of OH groups or Al of alumina support. 41 On the other hand, Fig.…”
Section: Nh 3 -Tpdsupporting
confidence: 85%
“…In general, for Ga 2 O 3 -supported catalysts, there are three kinds of active centers in the fresh catalysts: welldispersed Ga species, GaO + and bulk Ga 2 O 3 . 25,47 The welldispersed Ga species and GaO + usually have higher dehydrogenation activity as compared with bulk Ga 2 O 3 . 25 It can be seen from the H 2 -TPR curves in Fig.…”
Section: Xpsmentioning
confidence: 99%
“…16,[22][23][24] The various gallium species (Ga 2 O 3 , GaO + and Ga + ) as active constituents exhibited different performances for light alkane dehydrogenation reaction. 25 In addition, Nowak et al 26 also reported the dispersion of Ga 2 O 3 species varied with different supports. However, the effects of supports on the state of gallium species have not been fully understood, especially the causes of these changes.…”
Ga2O3-based catalysts supported on different supports (ZSM-5, SBA-15, γ-Al2O3 and SiO2) were prepared, and the effects of supports and Ga2O3 content (1–9 wt%) on their catalytic performance for the propane dehydrogenation reaction were discussed.
“…As shown in Table 4, the ratio of well-dispersed Ga in 5Ga 2 O 3 /ZSM-5 to 5Ga 2 O 3 /Al 2 O 3 is approximately equal to that of the strong acid peak area in the corresponding samples. This similar phenomenon was also mentioned by Ausavasukhi et al 25 In addition, a small peak at about 690 C can be noticed, which should be attributed to the reduction of OH groups or Al of alumina support. 41 On the other hand, Fig.…”
Section: Nh 3 -Tpdsupporting
confidence: 85%
“…In general, for Ga 2 O 3 -supported catalysts, there are three kinds of active centers in the fresh catalysts: welldispersed Ga species, GaO + and bulk Ga 2 O 3 . 25,47 The welldispersed Ga species and GaO + usually have higher dehydrogenation activity as compared with bulk Ga 2 O 3 . 25 It can be seen from the H 2 -TPR curves in Fig.…”
Section: Xpsmentioning
confidence: 99%
“…16,[22][23][24] The various gallium species (Ga 2 O 3 , GaO + and Ga + ) as active constituents exhibited different performances for light alkane dehydrogenation reaction. 25 In addition, Nowak et al 26 also reported the dispersion of Ga 2 O 3 species varied with different supports. However, the effects of supports on the state of gallium species have not been fully understood, especially the causes of these changes.…”
Ga2O3-based catalysts supported on different supports (ZSM-5, SBA-15, γ-Al2O3 and SiO2) were prepared, and the effects of supports and Ga2O3 content (1–9 wt%) on their catalytic performance for the propane dehydrogenation reaction were discussed.
“…The coked catalyst was heated at a heating rate of 10 °C/min under an air atmosphere. 13 C CP-MAS NMR spectroscopy was performed using a double resonance probe CPMAS with 7 mm rotors with a standard pulse sequence. The 1-hexene TPD-MS was conducted on an AutoChem II 2920 Chemisorption Analyzer apparatus equipped with the OmniStar 300 Mass Spectrometer to record the evolved H 2 signal.…”
Section: Characterization Of Catalystmentioning
confidence: 99%
“…In previous studies, a simple impregnation method for Gaincorporation was adopted, and the nature of the active gallium species was investigated. Ausavaukhi et al [13] prepared a series of Ga-containing ZSM-5 zeolites via impregnation and physical mixing and determined that the GaO + species act as stronger Lewis acid sites. Xiao et al [14,15] also reported that the extraframework GaO + species in impregnated ZSM-5 samples can react with the acidic protons of the zeolite framework and contribute to a strong Lewis acidity, which is favorable for dehydrogenation during propane aromatization under a N 2 atmosphere.…”
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