能源化工系
首页  >  师资队伍  >  博士生导师  >  能源化工系  >  正文

陆小军,博士,教授,博士生导师,科研团队负责人

地址:湖北省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:430073

电话:027-87194980

电子邮箱: xiaojunlu@wit.edu.cn

教育背景

2007.01-2011.11,南非金山大学(University of the Witwatersrand)化学工程 博士

2003.09-2006.03,华东理工大学,化学工艺,硕士

1998.09-2003.06,常州大学,化学工程与工艺,学士

工作履历

2020.06至今,武汉工程大学化工与制药学院,教授

2017.10-2020.05,生物质热化学技术国家重点实验室,副主任(兼)

2017.05-2020.05,武汉凯迪工程技术研究总院,副首席科学家

2013.03-2018.01,南非大学科学工程与技术学院,高级研究员、副教授

2012.01-2013.02,南非金山大学材料与过程合成中心,博士后

研究领域

兼具煤化工和石油化工教育、科研背景,从事CO、CO2加氢催化转化制取油品与化学品过程中催化剂和反应体系的研究,致力于生物质等分散含碳资源高效转化利用和传统能源与可再生能源融合发展技术的开发。研究领域包括:反应工程,非均相催化,合成气转化,CO2转化利用,费托合成技术,生物质能源高效转化。

团队

所牵头的团队共有5名老师,其中教授1名,副教授2名,青年教师2名;另有国外合作导师2名,其中美国罗格斯大学1名,南非大学1名。诚邀优秀博士、博士后加入团队。

主持基金项目

2025-2028,科技部国家重点研发计划“循环经济关键技术与装备专项”项目子课题;

2022-2024,科技部国家重点研发计划“政府间国际科技创新合作重点专项”项目子课题;

2016-2018,南非国家科研基金(NRF Thuthuka Fund);

2023-2025,湖北省“科技人才服务企业”项目。

中试及示范项目

陕西宝鸡煤制油中试项目(技术骨干);

美国休斯顿(Liberty GTL)3000桶/天天然气制油项目(技术负责人);

南非大学城市垃圾制油小型示范项目(项目负责人);

武汉凯迪生物质制合成油品示范项目(技术骨干)

企业研发项目

厦门圣元环保城市生活垃圾制绿氢及可持续航煤技术研发;

上海浦景化工丙烯酸酯类衍生物催化剂研发;

湖北海力氯乙烯合成无汞催化剂研发;

湖北浠水蓝天联合气体有限公司三氯氢硅合成技术开发和技术咨询;

湖北安耐吉环保科技有限公司技术咨询(科技副总)

学术荣誉及兼职

入选湖北省“百人计划”创新人才项目;获南非青年学者评级。

湖北省化学化工学会催化专业委员会委员;“可持续航空燃料联合创新中心”专家委员;湖北省“现代煤化工产业技术创新联合体”技术委员。

论文(部分)

1. Yibo Tang, Jiayin Liang, Jiabing Chen, Mengheng Wang, Xinying Liu, Xiaojun Lu, Constructing Co2C and ZSM-5 interface for enhanced activity in Fischer-Tropsch synthesis to olefins, Chemical Engineering Journal, 2025, 479, 147927.

2. Yibo Tang, Sheng Zhan, Jiayin Liang, Yiwen Liu, Jiabing Chen, Mengheng Wang, Xinying Liu, Diane Hildebrandt, Xiaojun Lu, Minimizing CoxMn1-xO Content in a Co2C Catalyst for Low CO2 Selectivity in Fischer-Tropsch Synthesis to Olefins, Journal of Catalysis, 2025, 441, 115856.

3. Zhichao Deng, You Luo, Haixing Chang, Bang Wu, Xiaojun Lu, Methanol-assisted NO oxidation under an oxygen atmosphere for efficient denitration Experiments and ReaxFF-MD simulations, Separation and Purification Technology, 2025, 358, 130413.

4. Xiaojun Lu, Pei Zhang, Zhichao Deng, Chengyang He, Rui Zhang,Reaction gas induced activity enhancement for silver catalyst in ethylene epoxidation, Fuel, 2025, 381, 133346.

5. Jiabing Chen, Xiaowei Zhu, Mengheng Wang, Xingmao Jiang, Xiaojun Lu, Synergistic Effects of Pr Doping on Oxygen Vacancies and Metal Dispersion in Ru/CeO2 Catalysts for Enhanced Ethylene Methoxycarbonylation Activity, Applied Surface Science, 2025, 712, 164154.

6. Jiabing Chen, Yibo Tang, Jiayin Liang, Xinying Liu, Xingmao Jiang, Xiaojun Lu, Effect of Ceria Morphology on the Catalytic Activity of Ru/Ceria for Hydroesterification of Ethylene, Materials Today Chemistry, 2025, 43, 102495.

7. Yiwen Liu, Chengyang He, Xingmao Jiang, Rui Zhang, Xinying Liu, Diane Hildebrandt, Xiaojun Lu, Fischer-Tropsch Synthesis to a-Olefins with Low CO2 Selectivity on a Co2C Catalyst, Chemical Engineering Journal, 2024, 479, 147927.

8. Jiabing Chen, Yibo Tang, Xingmao Jiang, Rui Zhang, Xiaojun Lu, Ru CeO2 Nanocatalysts with Weak Metal Support Interactions for Ethylene Methoxycarbonylation, ACS Appl. Nano Mater., 2024, 7, 14748−14759.

9. Chang J.; Zhang, Y.; Lu, X.; Yao, Y.; Liu, X.; Hildebrandt, D. Insight into the Role of Co2C Supported on Reduced Graphene Oxide in Fischer-Tropsch Synthesis and Ethene Hydroformylation, Applied Catalysis A: General, 2021, 614, 118050.

10. Zhang, Y.; Yao, Y.; Chang, J.; Lu, X.; Liu, X.; Hildebrandt, D. Fischer–Tropsch synthesis with ethene co-feeding: Experimental evidence of the CO-insertion mechanism at low temperature, AIChE Journal, 2020, 66, 17029.

11. Adeleke, A.A.; Liu, X.; Lu, X.; Moyo, M.; Hildebrandt, D. Cobalt Hybrid Catalysts in Fischer-Tropsch Synthesis. Reviews in Chemical Engineering, 2020, 36, 437-457.

12. Gorimbo J. Lu, X.; Liu, X.; Yao, Y.; Hildebrandt, D.; Glasser, D. Low Pressure Fischer-Tropsch Synthesis: in-situ Oxidative Regeneration of Iron Catalysts. Industrial & Engineering Chemistry Research 2017, 56, 4267-4274.

13. Gorimbo J. Lu, X. Hildebrandt, D.; Glasser, D. A long term study of the gas phase Low pressure Fischer-Tropsch products when reducing an iron catalyst with three different reducing gases. Applied Catalysis A 2017, 534, 1-11.

14. Lu, X.; Hildebrandt, D.; Glasser, D. Distribution between C2 and C3 in low temperature Fischer–Tropsch synthesis over a TiO2-supported cobalt catalyst. Applied Catalysis A 2015, 506, 67-76.

15. Zhu, X.; Lu, X.; Liu, X.; Hildebrandt, D.; Glasser, D. Heat Transfer Study with and without Fischer-Tropsch Reaction in a Fixed bed Reactor with TiO2, SiO2, and SiC Supported Cobalt Catalysts. Chemical Engineering Journal 2014, 247, 75-84.

16. Lu, X.; Hildebrandt, D.; Liu, X.; Glasser, D. A Thermodynamic Approach to Olefin Product Distribution in Fischer−Tropsch Synthesis. Industrial & Engineering Chemistry Research 2012, 51, 16544–16551.

17. Glasser, D.; Hildebrandt, D.; Liu, X.; Lu, X.; Masuku, C.M. Recent advances in understanding the Fischer–Tropsch synthesis (FTS) reaction. Current Opinion in Chemical Engineering 2012, 1, 296–362.

18. Lu, X.; Zhu, X.; Hildebrandt, D.; Liu, X.; Glasser, D. A new way to look at FTS using flushing experiments. Industrial & Engineering Chemistry Research 2011, 50, 4359–4365.

19. Lu, X.; Hildebrandt, D.; Liu, X.; Glasser, D. Making Sense of the Fischer-Tropsch Synthesis Reaction: Start-up. Industrial & Engineering Chemistry Research 2010, 49, 9753–9758.

20. Zhu, X.; Lu, X.; Liu, X.; Hildebrandt, D.; Glasser, D. Study of Radial Heat Transfer in a Tubular Fischer-Tropsch Synthesis Reactor. Industrial & Engineering Chemistry Research 2010, 49, 10682–10688.

专著

1. Zhichao Deng, Qiang Liao, Ao Xia, Xianqing Zhu, Mengheng Wang, Xiaojun Lu, Chapter 3 Advanced Analytical Tools for Lignin Characterization, in Lignin-driven Advanced Materials, 2025, Elsevier, Publisher: Peter Llewellyn, ISBN: 978-0-443-33798-7.

2. Xiaojun Lu, Diane Hildebrandt, Chapter 7 Fischer-Tropsch Reactors, in Chemicals and fuels from Biomass via Fischer-Tropsch Synthesis: A Route to Sustainability, 2022, RSC, ISBN: 978-1-83916-393-7.

授权专利

1. Fixed Bed Reactor, David Glasser, Xiaojun Lu, Diane Hildebrandt, US10751683B2

2. 一种用于一步法制备低碳烯烃的碳化钴复合催化剂及其制备方法,陆小军,刘一文,等, ZL2023104270831

3. 一种反应气体诱导提高乙烯环氧化反应体系催化剂活性的方法,陆小军,和铖阳,等,ZL2023103587628

4. 一种布碎的检测分析方法,陆小军,朱恒冰,等,ZL202411900238X

指导学生获得荣誉

博士生唐同学获得国家奖学金;

博士生陈同学获得优秀毕业论文;

博士生陈同学获得“第21届全国催化学术会议”最佳学术奖;

硕士生刘同学获得“2023中国化工学会科技创新大会”优秀墙报奖。

上一篇:陈苏芳
下一篇:吕仁亮