论文著作:
以第一/通讯作者在工程技术领域著名期刊发表论文20余篇:
[1] Jinhong Zhang*, Yansheng Huang, Daniel Takyi Sekyere, Weicheng Wang, Yuanyu Tian. Catalytic fast pyrolysis of waste pine sawdust over solid base, acid and base-acid tandem catalysts[J]. Bioresource Technology, 2024, 394: 130294. (SCI一区TOP)
[2] Jiming Liu, Jinhong Zhang*, Haoyang Sun, Chunxiao Gao, Yaozheng Chen, Ruotong Cui, Yuanyu Tian. Ultrastable bifunctional multi-stage active metal catalysts for low concentration CO2 capture and in-situ conversion[J]. Fuel, 2024, 357: 129801. (SCI一区TOP)
[3] Daniel Takyi Sekyere1, Jinhong Zhang1,*, Yaozheng Chen, Yansheng Huang, Mengfei Wang, Jiaxu Wang, Noah Niwamanya, Andrew Barigye, Yuanyu Tian, Production of light olefins and aromatics via catalytic co-pyrolysis of biomass and plastic, Fuel, 333 (2023) 126339. (SCI一区TOP)
[4] Zhang Jinhong*, Niwamanya Noah, Gao Chunxiao, Takyi Sekyere Daniel, Barigye Andrew, Tian Yuanyu*, Structure and millisecond pyrolysis behavior of heavy oil and its eight group-fractions on solid base catalyst, Fuel, 318 (2022) 123483. (SCI一区TOP)
[5] Noah Niwamanya, Jinhong Zhang*, Chunxiao Gao, Daniel Takyi Sekyere, Andrew Barigye, Jacqueline Nangendo, Yuanyu Tian, Catalytic Pyrolysis Behavior of Heavy Crude Oil Over Acid-base Composite Catalysts, Fuel, 328 (2022) 125285. (SCI一区TOP)
[6] Junhui Hao, Peijie Zong, Yuanyu Tian*, Jinhong Zhang*, Yingyun Qiao. Distribution and chemical structure characteristic of the fast thermal-cracking products of Buton oil sand bitumen by Py–GC/TOF–MS and a fluidized bed reactor. Energy Conversion and Management, 2019, 183: 485-499. (SCI一区Top)
[7] Junhui Hao, Wen Feng, Yingyun Qiao, Yuanyu Tian*, Jinhong Zhang*, Yuanjun Che, Thermal cracking behaviors and products distribution of oil sand bitumen by TG-FTIR and Py-GC/TOF-MS. Energy Conversion and Management, 2017, 151: 227-239 (SCI一区Top)
[8] Yuanjun Che, Meng Yuan, Yingyun Qiao, Qin Liu, Jinhong Zhang*, Yuanyu Tian*. Fundamental study of hierarchical millisecond gas-phase catalytic cracking process for enhancing the production of light olefins from vacuum residue. Fuel, 2019, 237:1-9. (SCI一区Top)
[9] Yuanjun Che, Junhui Hao, Jinhong Zhang*, Yingyun Qiao, Dawei Li, Yuanyu Tian*, Vacuum Residue Thermal Cracking: Product Yield Determination and Characterization Using Thermogravimetry–Fourier Transform Infrared Spectrometry and a Fluidized Bed Reactor, Energy & Fuels, 2018, 32 (2): 1348-1357. (SCI二区Top)
[10] Zhang Jinhong*, Tian Yuanyu*, Qiao Yingyun, Yang Chaohe, Shan Honghong, Structure and Reactivity of Iranian Vacuum Residue and Its Eight Group-Fractions. Energy & Fuels, 2017, 31 (8), 8072-8086. (SCI二区Top)
[11] Zhang Jinhong, Che Yuanjun, Wang Zhenbo, Qiao Yingyun*, Tian Yuanyu*, Coupling Process of Heavy Oil Millisecond Pyrolysis and Coke Gasification: A Fundamental Study, Energy & Fuels, 2016, 30 (8): 6698-6708. (SCI二区Top)
[12] Zhang Jinhong, Shan Honghong, Chen Xiaobo*, Liu Wenjing, Yang Chaohe*, Synergistic Process for High Nitrogen Content Feedstocks Catalytic Cracking: A Case Study of Controlling the Reactions of Nitrogen Compounds in Situ, Industrial & Engineering Chemistry Research, 2014, 53 (14): 5718-5727. (SCI二区Top)
[13] Zhang, Jinhong, Shan, Honghong*, Chen, Xiaobo, Liu, Wenjing, Yang, Chaohe*. Fluid Catalytic Cracking Study of Coker Gas Oil: Effects of Processing Parameters on Sulfur and Nitrogen Distributions[J]. Energy & Fuels, 2014, 28 (2): 1362-1371. (SCI二区Top)
[14] Zhang, Jinhong, Shan, Honghong, Chen, Xiaobo, Li, Chunyi, Yang, Chaohe*. In Situ Upgrading of Light Fluid Catalytic Cracking Naphtha for Minimum Loss. Industrial & Engineering Chemistry Research, 2013, 52 (19): 6366-6376. (SCI二区Top)
[15] Zhang, Jinhong, Shan, Honghong, Liu, Wenjing, Chen, Xiaobo, Li, Chunyi*, Yang, Chaohe*. Synergistic Process for Coker Gas Oil Catalytic Cracking and Gasoline Reformation. Energy & Fuels, 2013, 27 (2): 654-665. (SCI二区Top)
[16] Zhang, Jinhong, Shan, Honghong, Chen, Xiaobo, Li, Chunyi*, Yang, Chaohe*. Multifunctional Two-Stage Riser Catalytic Cracking of Heavy Oil. Industrial & Engineering Chemistry Research, 2013, 52 (2): 658-668. (SCI二区Top)