共 77 条
- [1] LI Dadong, NIE Hong, SUN Lili, Hydroprocessing technology and engineering, pp. 478-494, (2016)
- [2] ZHANG M, CHEN Y J, WANG L, Et al., Shape selectivity in hydroisomerization of hexadecane over Pt supported on 10-ring zeolites: ZSM-22, ZSM-23, ZSM-35, and ZSM-48, Industrial & Engineering Chemistry Research, 55, 21, pp. 6069-6078, (2016)
- [3] WANG Mengyan, HAN Lei, HUANG Chuanfeng, Et al., Development in the catalysts for light paraffin isomerization, Industrial Catalysis, 24, 5, pp. 19-24, (2016)
- [4] SONG Ye, LIN Wei, LONG Jun, Et al., Catalytic aromatization and isomerization performance of differently modified ZSM-5 zeolitesupported Ni catalysts for n-octane, Acta Petrolei Sinica (Petroleum Processing Section), 32, 4, pp. 659-665, (2016)
- [5] ZHAO X L, LIU W, WANG J Q, Et al., Interface mediated crystallization of plate-like SAPO-41 crystals to promote catalytic hydroisomerization, Applied Catalysis A: General, 602, pp. 117738-117751, (2020)
- [6] CHEN H M, YI F J, MA C P, Et al., Hydroisomerization of n-heptane on a new kind of bifunctional catalysts with palladium nanoparticles encapsulating inside zeolites, Fuel, 268, pp. 117241-117253, (2020)
- [7] BAUER F, FICHT K, BERTMER M, Et al., Hydroisomerization of longchain paraffins over nano-sized bimetallic Pt-Pd/H-beta catalysts, Catalysis Science & Technology, 4, 11, pp. 4045-4054, (2014)
- [8] KARAKOULIA S A, HERACLEOUS E, LAPPAS A A., Mild hydroisomerization of heavy naphtha on mono- and bi-metallic Pt and Ni catalysts supported on beta zeolite, Catalysis Today, 355, pp. 746-756, (2020)
- [9] WANG W, LIU C J, WU W., Bifunctional catalysts for the hydroisomerization of n-alkanes: the effects of metal-acid balance and textural structure, Catalysis Science & Technology, 9, 16, pp. 4162-4187, (2019)
- [10] WANG D X, KANG X, GU Y, Et al., Electronic tuning of Ni by Mo species for highly efficient hydroisomerization of n-alkanes comparable to Pt-based catalysts, ACS Catalysis, 10, 18, pp. 10449-10458, (2020)