Zheng Jinyu Luo Yibin Shu Xingtian. EFFECT OF PORE STRUCTURE AND ACIDIC PROPERTY ON CATALYTIC PROPERTIES OF POROUS ALUMINA MATERIALS[J]. , 2018, 49(12): 27-33.
[1] 李大东. 支撑未来炼油工业发展的若干关键技术[J]. 催化学报,2013,34(1):48-60[2] O'CONNOR P, GEVERS W, HUNPHRIES A, et al. Fluid Catalytic Cracking II:Concepts in Catalyst Design[M]. American Chemical Society,Washington DC,1991,318-342[3] ABRAMOVA A V, SLIVINSKII E V, GOLDFARB Y Y, et al. Development of efficient zeolite-containing catalysts for petroleum refining and petrochemistry [J]. Kinetics and Catalysis,2005,46(5):758-769[4] LI K, VALLA J, GARCIA-MARTINEZ J. Realizing the Commercial Potential of Hierarchical Zeolites: New Opportunities in Catalytic Cracking [J]. ChemCatChem,2014,6(1):46-66[5] CHAL R, G RARDIN C, BULUT M, et al. Overview and Industrial Assessment of Synthesis Strategies towards Zeolites with Mesopores [J]. ChemCatChem,2011,3(1):67-81[6] O'CONNOR P, HUMPHRIES A. P. Accessibility of Functional Sites in FCC. Am. Chem. Soc. Div. Petro. Chem. Preprints,1993,38(3):598[7] 朱华元,何鸣元,宋家庆. 催化剂的大分子裂化能力与渣油裂化[J]. 炼油设计,2000,30(8):47-51[8] ZHAO X, CHENG W C, RUDESILL J A. FCC bottoms cracking mechanisms and implications for catalyst design for resid applications[C]//National Petrochemical \& Refiners Association (NPRA),AM-02-53,2002.[9] 杨一青. 催化裂化催化剂孔结构表征及其对反应性能影响的研究进展[J]. 炼油与化工,2010,21(6):1-5,60[10] 郑金玉,欧阳颖,罗一斌,等. 无序介孔硅铝材料的合成表征及性能研究[J]. 石油炼制与化工,2015,46(9):47-51