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武汉工程大学化工与制药学院导师教师师资介绍简介-金放

本站小编 Free考研考试/2021-08-09


博士,教授
地址:湖北武汉东湖新技术开发区光谷一路206号,
武汉工程大学化工与制药学院
邮编:430205
Email:fangjin@wit.edu.cn
gold-fang@126.com

教育背景
2005 – 2008天津大学化工学院,博士;
2002 – 2005武汉工程大学化工与制药学院,硕士;
1998 – 2002武汉化工学院制药系,学士。
工作履历
2016.7 –至今,武汉工程大学,教授;
2012 – 2013,台湾大学化学系,博士后;
2011 – 2016,武汉工程大学化工与制药学院,副教授;
2009 – 2010,美国Texas A&M University化学工程系,博士后;
2008 – 2011,武汉工程大学化工与制药学院,讲师。
主要科研项目
甲醇合成汽油工艺中烯烃催化聚合过程的单元步骤(single event)微动力学理论研究,国家自然科学基金青年科学基金;
低碳烃芳构化过程复杂反应体系的有限元微动力学理论研究,留学回国人员科研启动基金;
磷肥工业副产氟硅酸合成分子筛催化剂新材料,湖北省教育厅自然科学研究重点项目。
乙烷氧化脱氢催化剂的开发和构效关系研究,国家能源石油炼制技术研发中心开放课题。
研究领域
催化反应工程;工业催化;有机催化;磷化工。
奖励与荣誉
2012年,湖北省优秀学士学位论文《熔融反应条件下磷矿还原动力学研究》指导教师;
2015年,湖北省优秀学士学位论文《含钛介孔分子筛催化剂合成新方法的研究》指导教师;
2016年,湖北省优秀学士学位论文《Synthesis of Alumino-silicate MCM-41 with Industrial Hexafluorosilicic Acid and Fluorine Removing Application》指导教师;
2020年,湖北省大学生化学(化工)学术创新成果报告会一等奖,指导教师;
2018-2020年,第十、十一、十二届全国大学生化工设计大赛,全国一、二等奖,赛区特等奖,指导教师;
学术成果
代表性论文:
1) TaoWang#,Fang Jin*,#,et al.,Atom-planting synthesis of MCM-36 catalyst to investigate the influence of porestructure and titanium coordination state on epoxidation activity, Microporousand Mesoporous Materials, 2021, 310: 110645-110656.
2) FangJin*,Peng Zhang, et al.,Fundamental kinetics model of acidity-activity relation for ethyleneoligomerizationand aromatization over ZSM-5 zeolites, Chemical Engineering Science, 2021, 229:116144-116159. 3) Fang Jin*,#,Yuanzhi Yan#, et al., Ethylene oligomerization over H- and Ni-formaluminosilicate composite with ZSM-5 and MCM-41 structure: Effect of aciditystrength, nickel site and porosity, Catalysis Today, 2020, 355: 148-161.
4) KangLu#,Fang Jin*,#,et al., The synergetic effect of acid and nickel sites on bifunctional MWWzeolite catalysts for ethylene oligomerization and aromatization, SustainableEnergy & Fuels, Sustainable Energy & Fuels, 2019, 3: 3569-3581.
5) Menghui Yan#,Fang Jin*,#, et al.,Synthesis of titanium-incorporated MWW zeolite by sequential deboronation and atom-plantingtreatment of ERB-1 as an epoxidation catalyst, Industrial & EngineeringChemistry Research, 2019,58:4764-4773.
6)F. Jin, Y.C. Fan, M.Yuan, F. Min, G.. Wu, Y.G. Ding, G. F. Froment,Single-event kinetic modeling of ethene oligomerization on ZSM-5,Catalysis Today, 2018,316:129-141
7)F. Jin, Y.C. Fan, G.Y. Wu, M. Yuan,Modified Brønsted Type Equation with Ammonia as Probe Molecule: Quantitative Acidity-Activity Relationship for Pyridine Synthesis with ZSM-5 Catalyst,Reaction Kinetics, Mechanisms and Catalysis, 2018,123:517-527
8)T.L. Liu,F. Jin*, X.Q. Wang, Y.C. Fan, M. Yuan,Synthesis of titanium containing MCM-41 from industrial hexafluorosilicic acid as epoxidation catalyst,Catalysis Today, 2017,297:316-323
9)F. Jin, Xianqiao Wang, Tieliang Liu, Linbo Xiao, Ming Yuan, Yangchun Fan,Synthesis of ZSM-5 with the silica source from industrial hexafluorosilicic acid as transalkylation catalyst,Chinese Journal of Chemical Engineering, 2017,25:1303-1313
10)F. Jin, Y.X. Wu, S.W. Liu, T.H. Lin, J. Lee, S. Cheng,Effect of Ti Incorporated MWW Supports on Au Loading and CatalyticPerformance for Direct Propylene Epoxidation,Catalysis Today, 2016,264:98-108
11) C.C. Chang,F. Jin, L.Y. Jang, J. Lee, S. Cheng, Effect of the grafting agent on the structure and catalytic performance of Ti-MCM-22,Catalysis Science & Technology, 2016,6(20):7631-7642
12)F. Jin, C.C. Chang, C.W. Yang, J. Lee, L. Jang, S. Cheng,New Mesoporous Titanosilicate MCM-36 Material Synthesized from Pillaring Layered ERB-1 Precursor,Journal of Materials Chemistry A, 2015,3:8715-8724
13)F. Jin, S.J. Huang, S. Cheng, Y.X. Wu, C.C. Chang, Y.W. Huang,The Influences of Al Species and Ti Species on the Catalytic Epoxidation over Si/Ti-pillaredMCM-36 synthesized from MCM-22,Catalysis Science & Technology, 2015,5:3007-3016
14)F. Jin, T.H. Lin, C.C. Chang, B.Z. Wan, J.F. Lee, S. Cheng,Gold Supported on Ti Incorporated MCM-36 as Efficient Catalysts in PropyleneEpoxidation with H2and O2, RSC Advances, 2015, 5:61710-61718
15)F. Jin, C.C. Chang, C.W. Yang, J. Lee, S. Chen,New Ti-incorporated MCM-36 as an efficient epoxidation catalyst prepared by pillaring MCM-22 layers with titanosilicate,Journal of Catalysis, 2014,319:247-257
16)F. Jin, G.Y. Wu, Y.D. Li,Effect of Sublimation Treatment on the Catalytic Performance of MFI Catalysts in Pyridine and 3-Picoline Synthesis,Chemical Engineering & Technology,2011,4(10):1660-1666
17)F. Jin, Y.G. Cui, Z.B. Rui, Y.D. Li,Effect of Sequential Desilication and Dealumination on Catalytic Performance of ZSM-5 Catalyst for Pyridine and 3-Picoline Synthesis,Journal of Materials Research, 2010,25(2):272-282
18)F. Jin, Y. Tian, Y.D. Li,Effect of Alkaline Treatment on the Catalytic Performance of ZSM-5 Catalyst in Pyridine and Picolines Synthesis,Industrial & Engineering Chemistry Research, 2009,48(4):1873-1879
19)F. Jin, Y.D. Li,The Effect of H2on Chichibabin Condensation Catalyzed by Pure ZSM-5 and Pt/ZSM-5 for Pyridine and 3-Picoline Synthesis,Catalysis Letters, 2009,131 (3-4):545-551
20)F. Jin, Y.D. Li,A FTIR and TPD Examination of the Distributive Properties of Acid Sites on ZSM-5 Zeolite with Pyridine as a Probe Molecule,Catalysis Today,2009,145(1-2):101-107
21)F. Jin, Y.G. Cui, Y.D. Li,Effect of alkaline and atom-planting treatment on the catalytic performance of ZSM-5 catalyst in pyridine and picolines synthesis,Applied Catalysis A-General, 2008,35 (1):71-78
专利:
1)金放,层状含介孔钛硅分子筛催化剂及其制备方法和应用, CN20**
2)金放,等,利用氟硅酸合成介孔分子筛并副产冰晶石的方法, CN20**
3)金放,等,一种利用氟硅酸合成MWW结构分子筛的方法和应用, CN20**
会议报告:
1)F. Jin,Single Event Kinetic Modeling of Olefins Oligomerization over ZSM-5 Catalyst, The 8th Asian-Pacific Chemical Reaction Engineering Symposium,上海, 2017.11.12-2017.11.15
2)金放,乙烯齐聚过程的Single-event微动力学模型的初步研究,第十八届全国催化学术会议,天津, 2017.10.16-2017.10.20
3)金放,工业磷肥副产氟硅酸合成分子筛材料及应用,2017第一届国际磷资源开发学术研讨会,宜昌, 2017.6.17
4)F. Jin,Gas-phase epoxidation of propylene with H2and O2over gold supported on Ti incorporated MWW structure catalysts,Catalytic Science and Technology in Sustainable Energy II,Tianjin, 2016.10.14
5)金放,ZSM-5分子筛催化乙烯齐聚合成汽油组分过程的单元步骤微动力学模型第十七届全国青年催化会议,兰州,2018.8.10




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