TY - JOUR
T1 - Preparation and characterization of alumina-rich β zeolites
AU - Gong, Jianyi
AU - Song, Shouqiang
AU - He, Mingyuan
PY - 2011/9
Y1 - 2011/9
N2 - In SiO2-Al2O3-tetraethylammonium fluoride hydrate-H2O system with dried silica-alumina gel(n(SiO2):n(Al2O3) 3-14) as alumina sources, low water content and sodium-free or low sodium content, alumina-rich β zeolites were synthesized under the approximate neutral condition at 170°C crystallization temperature in a 3 mL stainless autoclave. The alumina-rich β zeolites synthesized were characterized by means of XRD, SEM, 27Al MAS NMR, XRF and BET to analyze the effects of different crystallization conditions, namely alumina sources, crystallization time, n(H2O):n(Si+Al), n(SiO2):n(Al2O3) and dried silica-alumina gel calcination temperature on the crystallization process. The results showed that the calcined dried silica-alumina gel was an appropriate alumina source, the suitable n(H2O):n(Si+Al) was about 3. 5 and the sufficient crystallization time was more than 7 d. When n(SiO2):n(Al2O3) was less than 10, crystallization activity of the dried silica-alumina gel precursors increased with rise of the calcination temperature, and the relative high activity could be reached under the lowest n(SiO2):n(Al2O3) of 7 and calcination temperature of 1000°C. When n(SiO2):n(Al2O3) was more than 10, heightening the calcination temperature would result in decrease of the activity, and single phase alumina-rich β zeolites with n(SiO2):n(Al2O3) of less than 15 and high crystallinity could be obtained when n(SiO2):n(Al2O3) of the precursors was 10-14 and the calcination temperature was 600°C. And the obtained β zeolite particles were aggregations with major microcrystals(0.5-2.0 μm) and a little nanometer crystal grains (30-100 nm).
AB - In SiO2-Al2O3-tetraethylammonium fluoride hydrate-H2O system with dried silica-alumina gel(n(SiO2):n(Al2O3) 3-14) as alumina sources, low water content and sodium-free or low sodium content, alumina-rich β zeolites were synthesized under the approximate neutral condition at 170°C crystallization temperature in a 3 mL stainless autoclave. The alumina-rich β zeolites synthesized were characterized by means of XRD, SEM, 27Al MAS NMR, XRF and BET to analyze the effects of different crystallization conditions, namely alumina sources, crystallization time, n(H2O):n(Si+Al), n(SiO2):n(Al2O3) and dried silica-alumina gel calcination temperature on the crystallization process. The results showed that the calcined dried silica-alumina gel was an appropriate alumina source, the suitable n(H2O):n(Si+Al) was about 3. 5 and the sufficient crystallization time was more than 7 d. When n(SiO2):n(Al2O3) was less than 10, crystallization activity of the dried silica-alumina gel precursors increased with rise of the calcination temperature, and the relative high activity could be reached under the lowest n(SiO2):n(Al2O3) of 7 and calcination temperature of 1000°C. When n(SiO2):n(Al2O3) was more than 10, heightening the calcination temperature would result in decrease of the activity, and single phase alumina-rich β zeolites with n(SiO2):n(Al2O3) of less than 15 and high crystallinity could be obtained when n(SiO2):n(Al2O3) of the precursors was 10-14 and the calcination temperature was 600°C. And the obtained β zeolite particles were aggregations with major microcrystals(0.5-2.0 μm) and a little nanometer crystal grains (30-100 nm).
KW - Alumina-rich β zeolite
KW - Dried silica-alumina gel
KW - Pseudo-boehmite
KW - Silica gel
KW - Sodium metaaluminate
KW - Tetraethylammonium fluoride
UR - https://www.scopus.com/pages/publications/80053518769
M3 - 文章
AN - SCOPUS:80053518769
SN - 1000-8144
VL - 40
SP - 942
EP - 948
JO - Petrochemical Technology
JF - Petrochemical Technology
IS - 9
ER -