论文著作:
[1] A novel FCC catalyst synthesized via in situ overgrowth of NaY zeolite on kaolin microspheres for maximizing propylene yield[J].Catalysis Today,2007, 125,163.
[2] Synthesis, characterization and evaluation of a novel resid FCC catalyst based on in situ synthesis on kaolin microspheres. Catalysis Letters, 2006, 110,229
[3] Hydrothermally stable mesoporous aluminosilicates as superior FCC catalyst: From laboratory to refinery[J].Petroleum Science,2023, 20,1903.
[4] Obtaining of mesoporous aluminosilicates with high hydrothermal stability by composite organic templates: utility and mechanism[J].Langmuir,2021, 37, 9137.
[5] Regionally spatial framework Al distribution in MFI channels and its impact
on the n-butane cracking reaction pathways.Fuel,2023,353,129230.
[6] Synthesis of mesoporous aluminosilicates with moderate acidity and high hydrothermal stability by acid-free method.Industrial & Engineering Chemistry Research,2023, 62, 20251−20258
发明专利:
[1]一种高选择性的催化裂化催化剂的制备方法(中国发明专利授权:ZL 201910551789.2)
[2]一种具有晶内介孔的小晶粒NaY分子筛的合成方法(中国发明专利授权:ZL201911101696.6)
[3]一种提高催化裂化焦化蜡油掺渣比例的催化剂制备方法(中国授权发明专利:ZL201910547779.1)
[4]一种改善高岭土微球原位晶化产物孔结构的方法(ZL 200910093113.X)
[5]一种含小晶粒NaY分子筛的高岭土微球原位晶化物的合成方法(中国授权发明专利:ZL 200910093114.4 )
[6]一种提高催化裂化柴油收率的催化剂的制备(中国授权发明专利:ZL 201310292121.3)
[7]Method for The Preparation of High-Content NaY Molecular Sieves Synthesized from Kaolin Sprayed Microspheres(美国授权发明专利:USP 7390762)