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Original Articles

Advances in Catalytic Pyrolysis of Hydrocarbons

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Pages 1327-1341 | Received 21 Apr 2003, Accepted 24 May 2003, Published online: 03 Dec 2010

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J. Liu, W. Li, D. Li & C. Xu. (2012) Study on Olefin Decrement Reformulation and Increasing Light Olefins of FCC Gasoline by Catalytic Cracking. Petroleum Science and Technology 30:11, pages 1176-1185.
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Articles from other publishers (33)

Meijia Liu, Gang Wang, Zhongdong Zhang, Zhengyu Li, Shunnian Xu, Ruipu Wang & Shengbao He. (2023) Catalytic pyrolysis performance of alkanes to light olefins over bifunctional ZSM-5 zeolites. Journal of Analytical and Applied Pyrolysis 170, pages 105924.
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Mengshu GaoGuohao ZhangLiang Zhao, Jinsen GaoChunming Xu. (2023) Research Progress of Basic Catalyst Used in Catalytic Cracking for Olefin Production and Heavy Oil Utilization. Industrial & Engineering Chemistry Research 62:3, pages 1215-1226.
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Xin Wang & Youhao Xu. (2022) Recent Advances in Catalytic Conversion of C5/C6 Alkanes to Olefins: A Review. Catalysis Surveys from Asia 26:4, pages 245-260.
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Serban C. Moldoveanu. 2021. Analytical Pyrolysis of Natural Organic Polymers. Analytical Pyrolysis of Natural Organic Polymers 3 27 .
Veerachart Paluka, Thana Maihom, Chompunuch Warakulwit, Pemikar Srifa, Bundet Boekfa, Piti Treesukol, Potjaman Poolmee & Jumras Limtrakul. (2020) Density functional study of the effect of cation exchanged Sn-Beta zeolite for the diels-alder reaction between furan and methyl acrylate. Chemical Physics Letters 754, pages 137743.
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Aaron Akah, Jesse Williams & Musaed Ghrami. (2019) An Overview of Light Olefins Production via Steam Enhanced Catalytic Cracking. Catalysis Surveys from Asia 23:4, pages 265-276.
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Serban C. Moldoveanu. 2019. Pyrolysis of Organic Molecules. Pyrolysis of Organic Molecules 35 161 .
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V.G. Bondaletov & L.I. Bondaletova. (2016) Improving the efficiency of high-temperature processes for producing lower olefins via deep-processing of by-products. Resource-Efficient Technologies 2, pages S186-S200.
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Shayan Miar Alipour. (2016) Recent advances in naphtha catalytic cracking by nano ZSM-5: A review. Chinese Journal of Catalysis 37:5, pages 671-680.
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Xianghai Meng, Zhixi Wang, Rui Zhang, Chunming Xu, Zhichang Liu, Yadong Wang & Qiang Guo. (2013) Catalytic conversion of C4 fraction for the production of light olefins and aromatics. Fuel Processing Technology 116, pages 217-221.
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Ali A. Rownaghi, Fateme Rezaei & Jonas Hedlund. (2012) Selective formation of light olefin by n-hexane cracking over HZSM-5: Influence of crystal size and acid sites of nano- and micrometer-sized crystals. Chemical Engineering Journal 191, pages 528-533.
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N. A. Vasil’eva & R. A. Buyanov. (2011) Mechanism and principles of organization of catalytic radical heterogeneous-homogeneous processes. Review Journal of Chemistry 1:4, pages 344-358.
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M.A. Morris. 2011. Handbook of Biofuels Production. Handbook of Biofuels Production 349 389 .
Xiang Feng, Guiyuan Jiang, Zhen Zhao, Lei Wang, Xianghu Li, Aijun Duan, Jian Liu, Chunming Xu & Jinsen Gao. (2010) Highly Effective F-Modified HZSM-5 Catalysts for the Cracking of Naphtha To Produce Light Olefins. Energy & Fuels 24:8, pages 4111-4115.
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Marcello Rigutto. 2010. Zeolites and Catalysis. Zeolites and Catalysis 547 584 .
S.C. Moldoveanu. 2010. Pyrolysis of Organic Molecules with Applications to Health and Environmental Issues. Pyrolysis of Organic Molecules with Applications to Health and Environmental Issues 131 229 .
S.C. Moldoveanu. 2010. Pyrolysis of Organic Molecules with Applications to Health and Environmental Issues. Pyrolysis of Organic Molecules with Applications to Health and Environmental Issues 111 127 .
Xianghai Meng, Jingdong Ren, Chunming Xu, Jinsen Gao & Zhichang Liu. (2009) Hydrogen balance for catalytic pyrolysis of atmospheric residue. Fuel Processing Technology 90:4, pages 616-620.
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Xianghai Meng, Chunming Xu, Jinsen Gao, Li Li & Zhichang Liu. (2008) Catalytic and Thermal Pyrolysis of Atmospheric Residue. Energy & Fuels 23:1, pages 65-69.
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J.D. Holladay, J. Hu, D.L. King & Y. Wang. (2009) An overview of hydrogen production technologies. Catalysis Today 139:4, pages 244-260.
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Xianghai Meng, Chunming Xu, Jinsen Gao & Zhichang Liu. (2008) Influence of feed properties and reaction conditions on catalytic pyrolysis of gas oils and heavy oils. Fuel 87:12, pages 2463-2468.
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Guiyuan Jiang, Li Zhang, Zhen Zhao, Xinyu Zhou, Aijun Duan, Chunming Xu & Jinsen Gao. (2008) Highly effective P-modified HZSM-5 catalyst for the cracking of C4 alkanes to produce light olefins. Applied Catalysis A: General 340:2, pages 176-182.
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Mohammad Shakirullah, Imtiaz Ahmad, Mohammad Arsala Khan, Amjad Ali Shah, Mohammad Ishaq & Habib-ur-Rehman. (2008) Conversion of asphalt into distillate products. Energy Conversion and Management 49:1, pages 107-112.
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Xianghai Meng, Chunming Xu, Jinsen Gao & Li Li. (2007) Seven-lump kinetic model for catalytic pyrolysis of heavy oil. Catalysis Communications 8:8, pages 1197-1201.
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Zhichang LIU, Xianghai MENG, Chunming XU & Jinsen GAO. (2007) Secondary Cracking of Gasoline and Diesel from Heavy Oil Catalytic Pyrolysis. Chinese Journal of Chemical Engineering 15:3, pages 309-314.
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Wang Xiaoning, Zhao Zhen, Xu Chunming, Duan Aijun, Zhang Li & Jiang Guiyuan. (2007) Effects of Light Rare Earth on Acidity and Catalytic Performance of HZSM-5 Zeolite for Catalytic Cracking of Butane to Light Olefins. Journal of Rare Earths 25:3, pages 321-328.
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X. Meng, Ch. Xu & J. Gao. (2007) Effect of steam on heavy oil catalytic pyrolysis. Petroleum Chemistry 47:2, pages 83-86.
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Marcello S. Rigutto, Rob van Veen & Laurent Huve. 2007. Introduction to Zeolite Science and Practice. Introduction to Zeolite Science and Practice 855 XXVI .
Xianghai Meng, Chunming Xu & Jinsen Gao. (2008) Secondary Cracking of C4 Hydrocarbons from Heavy Oil Catalytic Pyrolysis. The Canadian Journal of Chemical Engineering 84:3, pages 322-327.
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Li Li, Jinsen Gao, Chunming Xu & Xianghai Meng. (2006) Reaction behaviors and mechanisms of catalytic pyrolysis of C4 hydrocarbons. Chemical Engineering Journal 116:3, pages 155-161.
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Xianghai Meng, Chunming Xu, Jinsen Gao & Li Li. (2006) Catalytic pyrolysis of heavy oils: 8-lump kinetic model. Applied Catalysis A: General 301:1, pages 32-38.
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Xianghai Meng, Chunming Xu, Jinsen Gao & Li Li. (2005) Studies on catalytic pyrolysis of heavy oils: Reaction behaviors and mechanistic pathways. Applied Catalysis A: General 294:2, pages 168-176.
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