| ||||||
Name: | Liu Xinmei | |||||
Academic Title: | Professor | |||||
Advisor Type: | PhD supervisor | |||||
Department: | Department of Chemical Engineering | |||||
Research Interests: | Industrial Catalysis Petroleum Refining and Chemical Engineering | |||||
E-Mail: | lxmei@upc.edu.cn | |||||
Telephone: | 13361238002 | |||||
◎Educational Background | ||||||
1988-1992, University of Petroleum (East China), Department of Petroleum Refining, Bachelor of Engineering 1995-1999, University of Petroleum (East China), College of Chemistry and Chemical Engineering, Master of Engineering 2001-2004, University of Petroleum (East China), College of Chemistry and Chemical Engineering, Doctor of Engineering 2001-2004, the University of Queensland, Visiting Scholar | ||||||
◎Work Experience | ||||||
1992-1998, University of Petroleum (East China), Department of Chemical Engineering, Assistant Professor 1998-2003, University of Petroleum (East China), College of Chemistry and Chemical Engineering, Lecturer 2003-2008, China University of Petroleum (East China), College of Chemistry and Chemical Engineering, Associate Professor 2008-present, China University of Petroleum (East China), College of Chemistry and Chemical Engineering, Professor | ||||||
◎Research Direction | ||||||
[1] Catalysts and New Catalytic Materials [2] Nanomaterials [3] Adsorption Material [4] Efficient Conversion of Petroleum and Natural Gas | ||||||
◎Research Project | ||||||
[1] Qingdao West Coast New Area Science and Technology Innovation Center Construction Project, S-zorb Waste Adsorbent Reactivation Technology Development, 2020-2-2, 2020-12 to 2022-12, Principle Investigator [2] General project of National Natural Science Foundation of China, Construction and Synergistic Effect of Nano Ni Clusters and Acid Sites in C5/C6 Alkane Hydroisomerization Catalyst, 21978326, 2020-01 to 2023-12, Principle Investigator [3] Key Project of National Natural Science Foundation of China, Precise Controlled Synthesis of Molecular Sieve Catalyst, 21991091, 2020-01 to 2024-12, Principle Investigator [4] General Project of Shandong Natural Science Foundation, Strengthening Hydrothermal Stability of MeAPO-11 Molecular Sieve by Skeleton Atom Coordination Environment, zr2019mb029, 2019-07 to 2022-06, Principle Investigator [5] Major Special Projects from the Ministry of Science and Technology of PetroChina, Scale-up Preparation and Hydrocracking Performance of Y Zeolite Rich in Secondary Pores, PRIKY19041,2019-09 to 2020-08, Principle Investigator [6] Key Research and Development Plan of Shandong Province, Scale-up Preparation Technology for the Reactivation of S-zorb Waste Adsorbent, 2018gsf117009, 2018-01 to 2019-12, Principle Investigator [7] PetroChina Technology Development Project, New Technology for Synthesis of Mesoporous Composite Channel Metastable MeSAPO-11 molecular sieve, PRIKY17066, 2017-02 to 2018-02, Principle Investigator [8] PetroChina Science and Technology Development Project, Development and Application of Micro-Meso porous ultra stable MeAPO-11 molecular sieve, 2017-01 to 2019-06, Principle Investigator [9] Major Special Project of PetroChina Catalyst, Large-scale Preparation and Hydrocracking Performance Research of Y Molecular Sieve Rich in Secondary Pores, 2016e-0707, 2016-07 to 2019-12, Principle Investigator [10] Major Special Sub Project of PetroChina Catalyst, Research on Reactivation Technology of Spent Catalytic Cracking Catalyst, 2016e-0701, 2016-07 to 2020-06, Principle Investigator [11] PetroChina Advanced Reserve Project, Research on Preparation of New Y/ZrO2 Composite Materials by Solid-State Reaction in-situ Crystallization, 2014a-2111, 2014-07 to 2017-06, Principle Investigator [12] General Project of National Natural Science Foundation of China, Pore Structure Design and Pore Confinement Effect of Deep Diesel Hydrodesulfurization Catalyst, 21376267, 2014-01 to 2017-12, Principle Investigator [13] General Project of Shandong Natural Science Foundation, Pore Confinement Effect of Heavy Oil Hydrotreating Catalyst, 2013zre28069, 2013-10 to 2016-10, Principle Investigator [14] Innovation Fund of China National Petroleum Corporation, Design and Performance Regulation of Gasoline Isomerization and Upgrading Catalyst, 2012d-5006-0402, 2012-07 to 2014-06, Principle Investigator | ||||||
◎Representative Papers and Patents | ||||||
More than 200 papers have been published in the field of this discipline, and the representative papers in the past five years are as follows: 1. Paper [1]Yuchao Lyu,Zongwei Sun,Xiaotong Meng,Yao Wu,Xinmei Liu*,Yue Hu,Scale-up reactivation of spent S-Zorb adsorbents for gasoline desulfurization,Journal of Hazardous Materials,2022,423:126903 [2]Chunzheng Wang, Ningkun Xu, Tingting Liu, Weisong Xu, Hailing Guo, Yanpeng Li, Peng Bai, Xinping Wu*, Xueqing Gong, Xinmei Liu*, Svetlana Mintova*, Mechanical pressure-mediated Pd active sites formation in NaY zeolite catalysts for indirect oxidative carbonylation of methanol to dimethyl carbonate, Journal of Catalysis, 2021, 396:269-280 [3]Chunzheng Wang, Weisong, Xu, Zhengxing Qin, Hailing Guo, Xinmei Liu*, *****************, Highly active Pd containing EMT zeolite catalyst for indirect oxidative carbonylation of methanol to dimethyl carbonate, Journal of Energy Chemistry,2021.52:191-201 [4]Di Zhang, Xinmei Liu*, Yuxiang Liu, Zifeng Yan, Impact of γ-alumina pore structure on structure and performance of 2 Ni-Mo/γ-Al2O3 catalyst for 4,6-dimethyldibenzothiophene desulfurization, Microporous and Mesoporous Materials, 2021, 310:110637 [5]Yuchao Lyu,Weilong Zhan,Zhumo Yu,Xinmei Liu*, Ye Yang,XiaoxingWang, Chunshan Song, Zifeng Yan,One-pot synthesis of the highly efficient bifunctional Ni-SAPO-11 catalyst, Journal of Materials Science & Technology,2021,76:86-94 [6]Yu Gu,Pingping Chen, Hao Yan,Xiaohui Wang; Yuchao Lyu, Yupeng Tian, Wanrong Liu; Zifeng Yan, Xinmei Liu*,Coking mechanism of Mo/ZSM-5 catalyst in methane dehydroaromatization,Applied Catalysis A: General, 2021, 613: 118019 [7] Yu Gu, Pingping Chen, Xiaohui Wang, Yuchao Lyu, Wanrong Liu, Xinmei Liu*, ZiFeng Yan,Active Sites and Induction Period of Fe/ZSM-5 Catalyst in Methane Dehydroaromatization,ACS catalysis, 2021,11:6771-6786 [8]Yupeng Tian, Xinmei Liu*, *****************, Longli Zhang, Yuanyuan Pan, Alain Rives, Yanan Liu, Ling Wei, Zifeng Yan, Isobutane dehydrogenation over high-performanced sulfide V-K/γ-Al2O3 catalyst: modulation of vanadium species and intrinsic effect of potassium, Journal of colloid and interface science, 2021, 600: 440-448 [9]Ye Yang, Lu Xu, Yuchao Lyu, Xinmei Liu*, Zifeng Yan, Controllable synthesis of SAPO-11/5 intergrowth zeolite for hydroisomerization of n-hexane,Microporous and Mesoporous Materials, 2021, 313:110857 [10]Ye Yang, Xinmei Liu*, Yuchao Lyu, Yuxiang Liu, Weilong Zhan, Zhumo Yu, Lei Fan, Zifeng Yan,Enhanced dispersion of nickel nanoparticles on SAPO-5 for boosting hydroisomerization of n-hexane,Journal of colloid and interface science, 2021, 604: 727-736 [11]Yupeng Tian, Xinmei Liu*, Weilong Zhan, Shuxing Cheng, Longli Zhang, Zifeng Yan, Elucidation of active species and reaction mechanism of sulfide V-K/Al2O3 catalyst for isobutane dehydrogenation, Applied Surface Science, 2021, 569: 151106 [12]Yanfeng Shen, Mingrui Xu, jingyang Li, Zhengxing Qin*, Chunzheng Wang, *****************, Xinmei Liu*, Preparation of core–shell-like zeolites by diffusion controlled chemical etching, Inorganic Chemistry Frontiers, 2021, 8, 2144,2100001:1-9 [13]Wanrong Liu, Xinmei Liu*, Yu Gu, Yuxiang Liu, Zhumo Yu, Yuchao Lyu , Yupeng Tian,A new composite consisting of Y zeolite and ZrO2 for fluid catalytic cracking reaction,Composites Part B 2020,200,108317 [14]Yu Gu, Xiaohui Wang, Zhengxing Qin, *****************, Xinmei Liu*, Intra-crystalline mesoporous ZSM-5 zeolite by grinding synthesis method, Microporous and Mesoporous Materials, 2020, 306:110437 [15]Yuchao Lyu, Xinmei Liu*, Weiqiang Liu, Adsorption/oxidation of ethyl mercaptan on Fe-N-modified active carbon catalyst[J], Chemical Engineering Journal, 2020, 393:124680 [16]Yuchao Lyu; Weilong Zhan; Xiaoxing Wang; Zhumo Yu; Xinmei Liu*, Zifeng Yan, Regulation of synergy between metal and acid sites in the Ni-SAPO-11 catalyst for n-hexane hydroisomerization, Fuel, 2020, 274:117855 [17]Yuxiang Liu, Wanrong Liu, Yuchao Lyu, Xinmei Liu*, Jun Zhang, Yu Gu, Jiankun Huang, *****************, Zifeng Yan, Intra-crystalline Mesoporous SAPO-11 Prepared by a Grinding Synthesis Method as FCC Promoters to Increase iso-Paraffin of Gasoline, Microporous and Mesoporous Materials, 2020,305:110320 [18]Yuxiang Liu, Dejiang Zheng, Lianming Zhao, Peng Peng, Xiaosheng Wang, Lu Li, Shitao Yu, Shiwei Liu, Xinmei Liu*, Zifeng Yan,Effect of fluoride ions on the stability of SAPO-11 molecular sieves Role of Fluoride Ions in Synthesis and Isomerization Performance of Superfine SAPO-11 Zeolite,Microporous and Mesoporous Materials, 2020, 306:110461 [19]Yuchao Lyu, Zhumo Yu, Ye Yang, Yuxiang Liu, Xinxin Zhao, Xinmei Liu*, Zifeng Yan, Guofeng Zhao, *****************, Metal and Acid Sites Instantaneously Prepared over Ni/SAPO-11 Hydroisomerization Catalyst,Journal of Catalysis,2019, 374:208-216. [20]Yuchao Lyu, Zongwei Sun, Ying Xin, Yuxiang Liu, Chunzheng Wang, Xinmei Liu*, Reactivation of spent S-Zorb adsorbents for gasoline desulfurization, Chemical Engineering Journal, 2019,374, 1109-1117. [21]Yuchao Lyu, Zhumo Yu, Ye Yang, Xinin Zhao, Liu Xinmei*, zifeng Yan, Metal-acid balance in the in-situ solid synthesized Ni/SAPO-11 catalyst for n-hexane hydroisomerization, Fuel, 2019, 243, 398-405 [22]Yuxiang Liu, Yuchao Lyu, Xinxin Zhao, Lu Xu, *****************, Zifeng Yan, Xinmei Liu*, Silicoaluminophosphate-11 (SAPO-11) Molecular Sieve Synthesized by a Grinding Synthesis Method, Chem. Comm. 2018, 54, 10950-10953 [23]Yuxiang Liu, Yuchao Lyu, Baojie Wang, Yi Wang, Xinmei Liu*, Rood J Mark, Zhen Liu, Zifeng Yan. Promoter effect of heteroatom substituted AlPO-11 molecular sieves in hydrocarbons cracking reaction[J]. Journal of Colloid & Interface Science, 2018, 528:330-335 [24]Yuchao Lyu, Yuxiang Liu, Xin He, Lu Xu, Xinmei Liu*, zifeng Yan. The regulation of Si distribution and surface acidity of SAPO-11 molecular sieve[J]. Applied Surface Science, 2018, 453: 350-357 [25]YuPeng Tian, Yanan Liu, Xinmei Liu*, ZiFeng Yan, V-K/γ-Al2O3 catalyst with sulfur introduction: high-performance for non-oxidative dehydrogenation of isobutene, Catalysis Science and Technology, 2018,8: 5473-5481 [26]Wanrong Liu, Xinmei Liu*, Ying Xin, Lu Xu, Qingxun Hu, Zhongdong Zhang, Preparation of Multi-stage Porous Y/ZrO2 Composites, Journal of Petroleum (Petroleum Processing), 2018, 34 (4): 689-695 [27]Yuxiang Liu, Xinmei Liu*, Lianming Zhao, Yuchao Lv, Lu Xu, Mark J. Rood, Ling Wei, Zhen Liu, Zifeng Yan, Effect of Lanthanum Species on the Physicochemical Properties of La/SAPO-11 Molecular Sieve,Journal of Catalysis,2017, 347:170-184 [28]Di Zhang, Weiqiang Liu, Yanan Liu, U.J.Etim, Xinmei Liu*, Zifeng Yan, Pore confinement effect of MoO3/Al2O3 catalyst for deep hydrodesulfurization, Chemical Engineering Journal, 2017,330, 707-717 [29]Yupeng Tian, Xinmei Liu*, Mark J. Rood, Zifeng Yan,Study of coke deposited on a VOx-K2O/γ-Al2O3 catalyst in the non-oxidative dehydrogenation of isobutane,Applied Catalysis A, 2017, 545:1-9 [30]Yuchao Lyu, Yuxiang Liu, Lu Xu, Xinxin Zhao, Zhen Liu, Xinmei Liu*, Zifeng Yan,Effect of ethanol on the surface properties and n-heptane isomerization performance of Ni/SAPO-11,Applied Surface Science, 2017, 401:57-64 [31]Di Zhang, Lijun Xue, Yongqiang Xu, Lijuan Song, Xinmei Liu*, Adsorption of 4,6-dimethyldibenzothiophene and collidine over MoO3/ ɤ-Al2O3 catalysts with different pore structures, Journal of Colloid and Interface Science, 2017, 493:218-227 [32]Lijun Xue, Di Zhang, Yongqiang Xu, Xinmei Liu*, Adsorption of thiophene compounds on MoO3/ɤ-Al2O3 catalysts with different mesopore sizes, Microporous and Mesoporous Materials,2017, 238:46-55
2.Patent [1] Xinmei Liu, Xingong Zhang, Yuchao Lyu, Zongwei Sun, Zheng Lian, Xiaotong Meng, Yao Wu, S-Zorb waste adsorbent reactivation system, ZL202121527229.2 (2022.01.14) [2] Xinmei Liu, Wanrong Liu, Longmei Liu, Zifeng Yan, Y/ZrO2composite material synthesized by seed crystal method and its preparation method, ZL20161064169.9 (2019.08.06) [3] Xinmei Liu, Wanrong Liu, Longmei Liu, Zifeng Yan, Y/ZrO2 composite material synthesized by two-stage crystallization method and its preparation method, ZL201710182179.0 (2019.10.11) [4] Xinmei Liu, Wanrong Liu, Longmei Liu, Zifeng Yan, Y/ZrO2composite material synthesized by directing agent method and its preparation method, ZL20161064168.4 (2018.04.06) [5] Xinmei Liu, Yuxiang Liu, Benjing Xu, Yuchao Lyu, Lu Xu, Zifeng Yan, Preparation method of rare earth substituted aluminophosphate molecular sieve with AEL structure, ZL201510594909.9 (2017.06.20) [6] Xinmei Liu, Yuxiang Liu, Benjing Xu, Lu Xu, Yuchao Lyu, Zifeng Yan, Microwave preparation method of nano-sized aluminophosphate molecular sieve, ZL201510593306.7 (2017.06.20) [7] Yuxiang Liu, Xinmei Liu, Benjing Xu, Yuchao Lyu, Lu Xu, Zifeng Yan, Preparation method of nano-sized aluminophosphate molecular sieve, ZL201510593307.1 (2017.06.20) [8] Xinmei Liu, Xin Meng, Zifeng Yan, Preparation method of efficient porous iron oxide desulfurizer, ZL201210148288.8 (2017.07.07) [9] Xinmei Liu, Longmei Liu, Yangyang Zheng, Yingjie Chen, Ying Xin, Benjing Xu, Zifeng Yan, Reactivation method of S-Zorb waste adsorbent, ZL201510325608.6, (2017.05.10) [10] Xinmei Liu, Longmei Liu, Yangyang Zheng, Yingjie Chen, Ying Xin, Benjing Xu, Zifeng Yan, Alkali treatment and reactivation method of S-Zorb waste adsorbent, ZL201510329719.4 (2017.08.08) [11] Xinmei Liu, Yingjie Chen, Yangyang Zheng, Ying Xin, Benjing Xu, Zifeng Yan, Ammonia Pretreatment reactivation method of S-Zorb waste adsorbent, ZL201510325982.6 (2017.05.24) [12] Xinmei Liu, Chunyi Li, Zifeng Yan, An efficient utilization method of catalytic cracking catalyst residue, ZL201210290467.5 (20150107) [13] Xinmei Liu, Caili Dai, Yunhong Ding, Baoshan Guan, Qi Cheng, Qing You, Mingwei Zhao, Xin Wang, Ping Liu, Li Liang, Preparation method of a fluorocarbon foaming agent N- (2-hydroxypropyl) perfluorooctanamide, ZL201210290467.5 (2014.02.06) [14] Xinmei Liu, Xiang Li, Hongxia Xue, Zifeng Yan, Preparation method of a hierarchical mesoporous g-Al2O3 nanorod, ZL201010236522.3 (2012.07.18) [15] Xinmei Liu, Xingong Zhang, Zifeng Yan, Method to reactivate FCC spent catalyst, ZL200810014209.8 (2010.10.20) [16] Xinmei Liu, Zifeng Yan, Lei Zhang, Xiaodong Dai, Ling Qian, Ke Qiao, Preparation method of a rare earth metal oxide/zirconia catalyst, ZL200810104307.0 (2010.06.09) [17] Xinmei Liu, Zifeng Yan, Gaoqing Lu, Ling Qian, Ke Qiao, Method for synthesizing mesoporous nanomaterials by solid state reaction structure-oriented technology, ZL200810104306.6 (2010.07.28) [18] Xinmei Liu, Yuxiang Liu, Xiao Cui, An anti-carbon deposition catalytic cracking catalyst and its preparation method, ZL201410746649.8 (2015.04.22) | ||||||
◎Representative Works | ||||||
[1] Compilation of Catalysis in oil refinery, and Oil Storage and Transportation [2] Participated in the compilation of textbooks Petrochemical Technology and Introduction to Catalytic Principles [3] Participated in thecompilation of Nanocatalysis Technology | ||||||
◎Awards and Honors | ||||||
Awards for teaching achievements: [1] In 2018, Construction and Practice of Three-Three-ThreeUndergraduate Education and Training System, the second prize of national teaching achievement, 5/17 [2] In 2017, Construction of Chemical Engineering Professional Talents Training System Guided by Engineering Ability Achievement, the first prize of Shandong Teaching Achievement, 1/12 [3] In 2017, Building a High-quality Teaching Platform for Chemical Engineering Professionals Guided by Engineering Ability Achievement, the first prize for teaching achievements in China's petroleum universities, 1/10 Awards for scientific research achievements: [1] In 2014, Multi-component Design and Full-cycle Efficient Utilization Technology of Catalytic Cracking Catalyst, the second prize of Shandong Science and Technology Progress Award, 1/10 [2] In 2013, Multi-component Design and Full-cycle Efficient Utilization Technology of Catalytic Cracking Catalyst, the second prize of Science and Technology Progress Award of China Petroleum and Chemical Industry Federation, 1/10 [3] In 2009, Resource Utilization of Waste FCC Catalyst, the first prize of Qingdao Science and Technology Progress Award, 1/5 [4] In 2012, the Second Prize of Shandong Pioneering Invention Award, 1/1 Honorary title: Professor Liu was awarded with the honorary titles of Shandong Famous Teacher, Qingdao Famous Teacher, Shandong Excellent Graduate Tutor, Shandong University March 8th Red-Banner Pacesetter, Qilu Woman Inventor, etc. Besides she has been awarded the first famous teacher, teacher's moral pacesetter, excellent teacher, great tutor in the eyes of graduate students and excellent graduate tutor in China University of Petroleum (East China). | ||||||
◎Courses Offered | ||||||
Undergraduates: Petroleum Refining Engineering, Principles of Catalysis, Seminar for Freshmen, Lectures on the Frontier of Disciplines Postgraduate: Preparation and Characterization of Catalysts | ||||||
◎Student Training | ||||||
1.Supervise Postgraduate Students There are 10 doctoral students, 14 academic postgraduates and 2 professional postgraduates. There are 60 graduate students. 2.Major requirements for enrollment: Chemical Engineering and Technology, Chemical Engineering | ||||||
◎Part-time Academic Job | ||||||
[1] National Engineering Education Professional Certification Expert [2] Member of the National Vocational Education and Teaching Steering Committee [3] Member of the Sixth Council of China Petrochemical Information Society [4] Director of Shandong Chemical Industry Society [5] Member of the 12th Council of Shandong Petroleum Society [6] Member of Training Standard Expert Committee of Shandong Enterprise Training Base [7] Member of Shandong Chemical Engineering Teaching Steering Committee Reviewer of Applied Catalysis B: Environmental, ACS Applied Materials & Interfaces, Applied Catalysis A, Fuel, Journal of Porous Materials and Journal of Material Science, etc. | ||||||
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