许俊强 教授 博士 重庆市 研究领域: 精细化工 研究方向: 能源化工,材料化工,精细化工等 所在单位: 重庆理工大学

基本信息

所在单位:
重庆理工大学
机构细分:
化学化工学院
单位类型:
高等院校
职务:
教授
职称:
教授
最高学历:
博士
教育经历:
2004/09- 2007/07,于四川大学化学工程学院获工学博士学位
工作经历:
2007/07- 2008/12,于重庆理工大学任职化学工程系讲师;
2009/01- 2012/12,于重庆理工大学任职化学工程系副教授;
2012/02- 2013/01,于浙江大学化学与生物工程系国内高级访问学者;
2012/12-至今,于重庆理工大学任职化工系教授(四级、三级)。
专家介绍:
许俊强,教授,博士,博士生导师、国家级教学成果二等奖主持人、国家一流课程负责人。

研究领域:能源化工,材料化工,精细化工等

主要业绩:科技部科技特派员,重庆市教书育人楷模,重庆市高等学校优秀人才,重庆市首批青年骨干教师,重庆市巴南区首批“菁英人才”,重庆市巴南区第五届学术技术带头人。主持国家自然科学基金等国家级项目2项,重庆市重点研发计划、重庆市教委重大项目等省部级项目20余项。获国家教学成果二等奖(排名第一)等国家级、省部级教学成果奖10余项。发表科研论文150余篇,三大检索100余篇。申请中国发明专利40余项,获授权10余项。获重庆市化工学会技术进步一等奖、中国产学研促进学会优秀奖等科研奖励6项。主编教材、专著2部。入选2023年中国高贡献学者榜单。

科研能力

研究领域:
精细化工
研究方向:
能源化工,材料化工,精细化工等
论文著作:
[1] Junqiang Xu, Maolin Xie, Tao Zheng, Qing Liu, Hong Shen, Yanlan Li, Kuang-Hsu Wu, Jiayun Zhang , Fang Guo*, Qiang Zhang, Minghua Duan. MFNT catalysts enhanced by the radio-frequency cold plasma preparation with wide temperature NH3-SCR activity: A combined experimental and DFT study.Chemical Engineering Journal,503(2025)158430 (化工TOP期刊,SCI一区,IF=16.744)
[2] Baibin Yang , Junqiang Xu*, Tian Tang, Linsui Jiang, Kuang-Hsu Wu, Qiang zhang,Maolin Xie, Haojie Hu, Fang Guo. High coke resistance Ni-based CH4/CO2 reforming catalysts with strong spatial confinement effect: Effect of CeO2 shell thickness. Chemical Engineering Journal 497 (2024) 154748 (SCI一区IF=16.744) (化工TOP期刊,SCI一区,IF=16.744)
[3] Guorong Chen, JunqiangXu*, Haijie Yu, Fang Guo*, Jiaqing Xie, Yaoqiong Wang. Effect of thenon-thermal plasma treatment on the structure and SCR activity ofvanadium-based catalysts. Chemical Engineering Journal. 2020 (化工TOP期刊,SCI一区,IF=16.744)
[4] Junqiang Xu, GuorongChen, Fang Guo, Jiaqing Xie.Development of wide-temperature vanadium-basedcatalysts for selective catalytic reducing of NOx with ammonia: Review.Chemical Engineering Journal. 2018(化工TOP期刊,SCI一区,IF=16.744)
[5] Qiang Zhang*, Junyi Peng, Haosen Xiong, Shiyu Jiang, Wei Li, Xiaohong Fu, Shuyong Shang, Junqiang Xu*, Ge He*. Cold plasma-activated Ni-Co tandem catalysts with CN vacancies for enhancing CH4 electrocatalytic to methyl formate. Applied Catalysis B: Environment and Energy. 362 (2025) 124759 (化学类TOP期刊,SCI一区,IF=22.1)
[6] Junqiang Xu*, Qing Liu, Tao Zheng, Maoling Xie, Yanlan Li, Hong Shen, Fang Guo, Qiang Zhang, Minghua Duan, Kuang-Hsu Wu. Performance and Kinetic studies of Mn-Fe-Nb/TiO2 catalysts prepared by different methods for selective catalytic reduction of NO with NH3. Separation and Purification Technology 2024(SCI一区TOP期刊,IF=8.1)
[7] JunqiangXu, BaibinYang, KaipengChen, Qiangzhang, PanXia, LinsuiJiang, FangGuo.∗ Cold Plasma and Ethanol Coupling-activated Ni/MCM-41 Catalysts with Highly Stability and Activity for Dry Reforming of Methane. Microporous and Mesoporous Materials. 364 (2024) 112847 (SCI一区,IF=5. 2)
[8] Junyi Peng, Qiang Zhang*, Yang Zhou, Xiaohui Yang*, Fang Guo, Junqiang Xu*. Cold plasma-activated Cu-Co catalysts with CN vacancies for enhancing CO2 electroreduction to low-carbon alcohol. Journal of Energy Chemistry. 2023, 108-115(SCI一区, IF=13.1)
[9] Qiang Zhang*, Jianlin Wang, Fang Guo, Ge He, Xiaohui Yang, Wei Li, Junqiang Xu*, Zongyou Yin*. Nitrogen cold plasma treatment stabilizes Cu0/Cu+ electrocatalysts to enhance CO2 to C2 conversion.Journal of Energy Chemistry. 2023, 321-328(SCI一区, IF=13.1)
[10] Hong Shen, Junqiang Xu, Dan Zhang, Xianlin Zou, Tao Zheng, Baibin Yang, Fang Guo, Qiang Zhang. Enhanced denitrification performance of Mo/Mn co-doped 5%Fe/TiO2 catalysts via citric acid_x0002_assisted impregnation. Journal of Environmental Chemical Engineering.2024 accepted. (SCI二区IF=5.909)
[10] Junqiang Xu, Tian Tang, Xiaohong Sheng, Yanrong Zhang, Qiang Zhang*, Fang Guo. Excellent activity caused by dielectric barrier discharge (DBD) plasma activation for selective catalytic reduction with propylene (C3H6-SCR): Insight into the low temperature catalytic behavior of Mn/ZSM-5 catalysts. Journal of Environmental Chemical Engineering. 2022(SCI二区)(IF=5.91)
[11] Junqiang Xu, Yalin Liu, Huan Tian, Qiang Zhang, Wuyi Cao, Kaipeng Chen, Fang Guo*. Ni-based catalysts with coke resistance enhance by radio frequency discharge plasma for CH4/CO2 reforming. International Journal of Hydrogen Energy. 2022 (SCI二区)(IF 5.816)
[12] Junqiang Xu, Pan Xia, Fang Guo*, Jiaqing Xie, Yong Xia, Huan Tian. Enhancement of the catalytic performance and coke resistance of alcohol-promoted Ni/MCM-41 catalysts for CH4/CO2 reforming. International Journal of Hydrogen Energy.2021(SCI二区)(IF 5.816)
[13] Junqiang Xu, Pan Xia, Qiang Zhang, Fang Guo*, Yong Xia, Huan Tian. Coke resistance of Ni-based catalysts enhanced by cold plasma treatment for CH4-CO2 reforming: Review. International Journal of Hydrogen Energy. 2021(SCI二区)(IF 5.816)
[14] Fang Guo, Renhao Zhang, Wuyi Cao, Hongmei Liu, Kuang-Hsu Wu, Junqiang Xu*. CTAB-assisted radio frequency discharge plasma treatment enhances catalytic activity at sustained coking resistance of Nickel-based catalysts for CO2/CH4 reforming reaction. Molecular Catalysis. 2024 (SCI二区,IF=5.062)
[15] Fang Guo; Wuyi Cao; Lili Wang; Qiang Zhang; Junqiang Xu*. High activity and strong coke resistance of nickel CO2-CH4 reforming catalyst promoted by different plasma treated modes. Molecular Catalysis. 2023 535 (2023) 112821 (SCI二区,IF=5.062)
[16] Junqiang Xu, Hong Shen, Xianlin Zhou, Tao Zheng, Fang Guo* ,Qiang Zhang, Minghua Duan. Enhancement low-temperature NH3-SCR activity of the Fe-Mn-Mo/TiO2 catalyst and its DFT calculations and kinetics. Molecular Catalysis. 551 (2023) 113657 (SCI二区,IF=5.062)
[17] Fang Guo, Jun-QiangXu*, Wei Chu. CO2 reforming of Methane over Mn promoted Ni/Al2O3 catalysttreated by N2 glowdischarge plasma, Catalysis Today, 2015, 256, 124-129 (SCI二区)(IF=6.766)
[18] Wei Chu, Junqiang Xu*,et al. Design of Fischer Tropsch Cobalt CatalystsPrepared byPlasma Enhancement: Reducibility and Performance, Catalysis Today,2015, 256,41-48 (SCI二区)(IF=6.766)
[19] Fang Guo, Linsui Jiang, Huan Tian, Kaipeng Chen, Baibin Yang, Wuyi Cao, Qiang Zhang, Junqiang Xu*. N2 RF-plasma-assisted preparation of small size Ni-Ce catalysts for dry reforming of methane with high activity and great coke-resistant performance. Vacuum. 220 (2024) 112784. (SCI二区,IF=3.627) Volume 220, February 2024, 112784
[20] Junqiang Xu, Tao Zheng, Xianlin Zhou, Hong Shen, Fang Guo* ,Qiang Zhang, Minghua Duan. The facilitating effect of S-doping coupled sol-gel method on NH3-SCR activity of Fe-Mn/TiO2 catalysts. Journal of the Energy Institute 112 (2024) 101458 (SCI二区,IF=4. 2)
[21] Tian Tang, Junqiang Xu*, Xiaohong Sheng, Yanrong Zhang, Qiang Zhang, Fang Guo. Radio-frequency (RF) plasma synthesis of H-ZSM-5 supported MnOx catalysts with high catalytic activity for deNOx-SCR by propylene. Vacuum. 2022, 195, 110704 (SCI二区,IF=2.096)
[22] Junqiang Xu, Tian Tang, Qiang Zhang, Chuan Zhang, Fang Guo*. Remarkable low temperature catalytic activity for SCR of NO with propylene under oxygen-rich conditions over Mn0.2La0.07Ce0.05Ox/ZSM-5 catalyst. Vacuum. 188 (2021) 110174 (SCI二区,IF=2.096)
[23] Junqiang Xu, Xianlin Zou, Guorong Chen, Yanrong Zhang, Qiang Zhang*, Fang Guo*. Tailored activity of Ce–Ni bimetallic modified V2O5/TiO2 catalyst for NH3-SCR with promising wide temperature window. Vacuum. 2021, 191, 110384. (SCI二区,IF=2.096)
[24] Tian Tang, Junqiang Xu*, Xiaohong Sheng, Yanrong Zhang, Qiang Zhang, Fang Guo. Radio-frequency (RF) plasma synthesis of H-ZSM-5 supported MnOx catalysts with high catalytic activity for deNOx-SCR by propylene. Vacuum. 2022, 195, 110704 (SCI二区,IF=2.096)
[25] Qiang Zhang*, Jianlin Wang, Fang Guo, Yang Zhou, Ge He*, Junqiang Xu*. Steric effects of CN vacancies for boosting CO2 electroreduction to CO with ultrahigh selectivity. ChemComm. 2023, 59, 203-206 (SCI二区,IF=6.222)
发明专利:
[1] 许俊强,张艳容,邹贤林,余海杰,郭芳. 一种用于NH3-SCR降解的Mn基脱硝催化剂的制备方法及应用. 中国发明专利. 授权号ZL202111111254.7(已授权)
[2] 许俊强,邹贤林,余海杰,张艳容,郭芳,张强. 一种SCR降解NO的Nb-Ce-W催化剂制备方法及应用. 中国发明专利. 授权号ZL202111111180.7(已授权)
[3] 许俊强,邹贤林,余海杰,张艳容,郭芳,张强. 一种SCR降解NO的Nb-Ce-Zr催化剂制备方法及应用 中国发明专利. 申请号CN 202111111505.1
[4] 许俊强,盛小红,唐田,郭芳,张强.一种Mn基低温C3H6-SCR催化剂的制备方法及应用. 中国发明专利.授权号ZL202111110726.7(已授权)
[5] 许俊强;张强;郭芳;李军.利用Beta脱硅合成高水热稳定性MCM-41分子筛的方法.中国发明专利.授权号ZL201510238171.2 (已授权)
[6] 许俊强;张强;郭芳;陈志.利用ZSM-5脱硅合成高水热稳定性MCM-41分子筛的方法.中国发明专利.授权号ZL201510238170.8 (已授权)
[7] 许俊强;张强;郭芳;田宝良.利用MOR脱硅合成高水热稳定性MCM-41分子筛的方法.中国发明专利.授权号ZL201510238768.7(已授权)
[8] 许俊强;全学军.一种深度处理焦化废水的催化剂及其制备方法.中国发明专利.授权号ZL201010578047.8(已授权)
[9] 许俊强,张川,郭芳,陈国荣.一种用于SCR降解NO催化剂.中国发明专利.申请号CN201711114192.9.
[10] 许俊强,张川,郭芳,王虹霖,邱东,谢家庆.一种选择性催化还原NO的Mn-La-Ce催化剂及其应用. 中国发明专利. 申请号CN201810357469.9
[11] 郭芳,张盼艺, 张川,许俊强.一种异丙醇改性的CO2重整催化剂的制备方法及应用. 中国发明专利. 申请号CN201810196849.9
[12] 郭芳,张盼艺, 张川, 许俊强.一种表面活性剂增强CO2重整催化剂的制备方法及应用. 中国发明专利. 申请号CN201810119620.5
[13] 郭芳,夏攀,许俊强,夏勇.一种乙二醇改性的CO2重整催化剂的制备方法及应用. 中国发明专利. 申请号CN 201910375484.0
[14] 许俊强,陈国荣, 郭芳, 余海杰. 一种非常规SCR的V-Ce-Ni催化剂制备及应用. 中国发明专利. 申请号CN201910061756.X
[15] 许俊强,陈国荣, 郭芳, 谢家庆, 余海杰, 杨超. 一种用于SCR降解NO的V-Ce-Ni催化剂及应用.中国发明专利. 申请号CN201910061702.3
[16] 郭芳,张盼艺, 张川, 许俊强.一种表面活性剂增强CO2重整催化剂的制备方法及应用. 中国发明专利. 申请号CN201810119620.5
[17] 许俊强,田欢,郭芳,陈开朋,刘娅林. 一种射频等离子体强化制备Ni基催化剂的制备方法及应用. 中国发明专利. 申请号CN202111111015.1
科研项目:
[1] 2013.01-2015.12. 基于提高介孔分子筛水热稳定性的高缩聚度微结构单元的设计与合成,国家自然科学基金,项目负责人,50万元;
[2] 2024.01-2026.12. 高性能挤出级聚苯硫醚合成关键技术研发及应用,重庆市技术创新与应用发展专项重点项目. 项目负责人,15/100万元
[3] 2024.01-2025.12 向“绿”、逐“绿”煤化工系列科学普及活动——践行绿色低碳发展使命,重庆市科技传播与普及专项 项目负责人,70万元
[4] 2023.01-2024.12 零碳化工与绿色生态环境的体验与展演,重庆市科技传播与普及专项(科普活动|重点), 项目负责人,20万元
[5] 2022.01-2024.12 Mn基双金属窑炉尾气脱硝催化剂的可控制备及其构效关系研究 重庆市教委科学技术研究重大项目,项目负责人,20万元
[6] 2019.07-2021.06 汽车尾气SCR用高效催化剂的配方及工艺研究,重庆市技术创新与应用发展(面上项目),项目负责人,20万元
[7] 2019.07-2021.06 工业炉窑脱硝深度治理技术开发与应用,重庆市技术创新与应用发展(重点项目),负责人,20万元/100万元
[8] 2018.01-2020.12. 基于提高低温活性的汽车尾气SCR用高效分子筛催化剂的配方及工艺研究,重庆市高等学校优秀人才计划,项目负责人,20万元;
[9] 2012.01-2014.12. 高水热稳定介孔分子筛的次级结构导向合成及原位组装机理研究,重庆市高等学校青年骨干教师资助计划,项目负责人,6万元;
[10] 2016.10-2019.10. 基于复杂煤质及锅炉低负荷工况的脱硝催化剂配方及工艺研究,重庆市重点产业共性关键技术创新专项.项目负责人,20万元/150万元;
[11] 2016.01-2018.12. 重庆市化工过程本质安全协同创新中心,重庆市协同创新中心,项目负责人,50万元;
[12] 2017.04-2019.04. 绿色化工的环境与安全的趣味化学体验和作品研制,重庆市科技传播及普及项目,项目负责人,10万元;
[13] 2013.09-2016.12. 半导体照明产业协同创新与关键技术攻关示范工程协同管理示范与提升,重庆市“121”科技支撑示范工程,项目负责人,30万元;
[14] 2015.01-2015.12. 环境安全的“奇趣”化学体验和作品展,重庆市科技传播及普及项目,项目负责人,10万元;
[15] 2010.10-2013.10. 新型硅基介孔分子筛掺杂制备关键技术及其应用,重庆市科技攻关项目,项目负责人,20万元;

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