Maximizing jet fuel production from n-hexadecane hydrocracking over Pt-supported Y catalysts: Importance of ideal hydrocracking characteristics
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Shengping Wang | Yujun Zhao | Xuan Guo | Xinbin Ma | Chao Mu | Yi Li | Jing Xu | Yule Wang | Guangxin Chu
[1] Zhiqiang Li,et al. A stable aluminosilicate zeolite with intersecting three-dimensional extra-large pores , 2021, Science.
[2] K. D. de Jong,et al. Control and Impact of Metal Loading Heterogeneities at the Nanoscale on the Performance of Pt/Zeolite Y Catalysts for Alkane Hydroconversion , 2021, ACS catalysis.
[3] D. Murzin,et al. Hydrocracking of hexadecane to jet fuel components over hierarchical Ru-modified faujasite zeolite , 2020 .
[4] Xinbin Ma,et al. A density functional theory study on the mechanism of Dimethyl ether carbonylation over heteropolyacids catalyst , 2020, Frontiers of Chemical Science and Engineering.
[5] Seung Jun Lee,et al. Facile synthesis of mesoporous zeolite Y using seed gel and amphiphilic organosilane , 2019, Microporous and Mesoporous Materials.
[6] D. Murzin,et al. Hexadecane hydrocracking for production of jet fuels from renewable diesel over proton and metal modified H-Beta zeolites , 2019, Molecular Catalysis.
[7] Wei Li,et al. Investigation on hydroisomerization and hydrocracking of C15–C18 n-alkanes utilizing a hollow tubular Ni-Mo/SAPO-11 catalyst with high selectivity of jet fuel , 2019, Catalysis Today.
[8] F. Abnisa,et al. A review on deoxygenation of triglycerides for jet fuel range hydrocarbons , 2019, Journal of Analytical and Applied Pyrolysis.
[9] D. Resasco,et al. Effect of Metal–Acid Balance on Hydroprocessed Renewable Jet Fuel Synthesis from Hydrocracking and Hydroisomerization of Biohydrogenated Diesel over Pt-Supported Catalysts , 2018 .
[10] Minkee Choi,et al. Maximizing Biojet Fuel Production from Triglyceride: Importance of the Hydrocracking Catalyst and Separate Deoxygenation/Hydrocracking Steps , 2017 .
[11] G. Centi,et al. Effect of the Structure and Mesoporosity in Ni/Zeolite Catalysts for n‐Hexadecane Hydroisomerisation and Hydrocracking , 2017 .
[12] L. Xuejun,et al. Hydrocracking of bio-alkanes over Pt/Al-MCM-41 mesoporous molecular sieves for bio-jet fuel production , 2016 .
[13] Wei-Cheng Wang,et al. Bio-jet fuel conversion technologies , 2016 .
[14] J. Martens,et al. Nanoscale intimacy in bifunctional catalysts for selective conversion of hydrocarbons , 2015, Nature.
[15] A. Galadima,et al. Catalytic upgrading of vegetable oils into jet fuels range hydrocarbons using heterogeneous catalysts: A review , 2015 .
[16] F. Fajula,et al. Hydroconversion of n-hexadecane over bifunctional microporous and mesoporous model catalysts. Influence of pore architecture on selectivity , 2015 .
[17] Wei Li,et al. Bio-aviation fuel production from hydroprocessing castor oil promoted by the nickel-based bifunctional catalysts. , 2015, Bioresource technology.
[18] J. Martens,et al. IZM-2: A promising new zeolite for the selective hydroisomerization of long-chain n-alkanes , 2013 .
[19] N. Chen,et al. Isomerization of n-alkanes derived from jatropha oil over bifunctional catalysts , 2013 .
[20] Linda Shafer,et al. Converting Algal Triglycerides to Diesel and HEFA Jet Fuel Fractions , 2013 .
[21] Baojie Wang,et al. A defect-based strategy for the preparation of mesoporous zeolite Y for high-performance catalytic cracking , 2013 .
[22] J. Weitkamp. Catalytic Hydrocracking—Mechanisms and Versatility of the Process , 2012 .
[23] H. Friedrich,et al. Zeolite Y crystals with trimodal porosity as ideal hydrocracking catalysts. , 2010, Angewandte Chemie.
[24] Johan A. Martens,et al. Fischer-Tropsch Waxes Upgrading via Hydrocracking and Selective Hydroisomerization , 2009 .
[25] J. Martens,et al. Dimethyl Branching of Long n-Alkanes in the Range from Decane to Tetracosane on Pt/H–ZSM-22 Bifunctional Catalyst , 2000 .
[26] R. Prins,et al. Comparison of the dealumination of zeolites beta, mordenite, ZSM-5 and ferrierite by thermal treatment, leaching with oxalic acid and treatment with SiCl4 by 1H, 29Si and 27Al MAS NMR , 2000 .
[27] Gilbert F. Froment,et al. Hydrocracking of Isoheptadecanes on Pt/H–ZSM-22: An Example of Pore Mouth Catalysis☆ , 1998 .
[28] Gilbert F. Froment,et al. Selective Isomerization of Hydrocarbon Chains on External Surfaces of Zeolite Crystals , 1995 .
[29] S. Sheu,et al. Study of Si and Al ordering in the framework of siliceous cubic and hexagonal faujasite zeolites , 1994 .
[30] P. Jacobs,et al. Evidence for hypocage catalysis in FAU/ EMT zeolites derived from isomerisation and hydrocracking of heptadecane , 1993 .
[31] G. Froment. Kinetics of the hydroisomerization and hydrocracking of paraffins on a platinum containing bifunctional Y-zeolite , 1987 .
[32] J. Lunsford,et al. Determination of framework aluminium content in dealuminated Y-type zeolites: a comparison based on unit cell size and wavenumber of i.r. bands , 1986 .
[33] J. Martens,et al. Primary Cracking Modes Of Long Chain Paraffinic Hydrocarbons In Open Acid Zeolites , 1985 .