蓝国钧科研成果
发布日期:2024-04-27 专利申请、商标注册、软件著作权、资质办理快速响应 微信:543646
姓名 | 蓝国钧 | 性别 | |
学校 | 浙江工业大学 | 部门 | 化学工程学院 |
学位 | 博士 | 学历 | 化学工程学院 |
职称 | 副研究员 | 联系方式 | 莫干山校区化工2号楼307 |
邮箱 | languojun@zjut.edu.cn | ||
软件产品登记测试全国受理 软件著作权666元代写全部资料全国受理 实用新型专利1875代写全部资料全国受理 |
个人简介 1. 2023.12-至今,浙江工业大学,化学工程学院,副研究员2. 2016.07-2023.12,浙江工业大学,化学工程学院,助理研究员3. 2016.10-2018.10,浙江工业大学,博士后,合作导师:宋爽教授4. 2013.01-2015.08,中国科学院大连化学物理研究所,催化基础国家重点实验室,联合培养导师:杨启华研究员5. 2011.09-2016.06,浙江工业大学,化学工程与技术,博士,导师:李瑛6. 2006.09-2010.06,浙江工业大学,应用化学,本科 教学与课程 承担本科生《物理化学》,《现代催化研究方法》和研究生《现代催化剂表征技术》等课程的教学工作。 科研项目 1. 新型低温低压绿氨合成催化剂的开发,企业横向,2023.12-2026.12,主持2. 用于生物质羧酸水相加氢的界面限域炭载钴催化剂研究,国家自然科学基金青年项目,2020.01-2022.12,主持3. 超稳低汞聚氯乙烯合成催化剂工业试验与应用-氯乙烯单体合成用超稳低汞催化剂的研发,内蒙古科技重大专项,2019.10-2023-09,参与4. 乙炔氢氯化超稳低汞催化剂的生产和工业化,企业横向,2020.08-2030.08,参与5. 乙炔氢氯化超低汞催化剂的绿色生产与工业化应用,企业横向,2020.05-2023.05,参与6. 催化剂载体专用成型炭的技术开发与产业化,企业横向,2018.10-2021.10,主持7. 氰胺废渣中炭资源的综合利用技术开发,企业横向,2018.08-2021.08,主持8. 基于限域作用构建高稳定性氮化硼负载钌催化剂及构效关系研究,浙江省博士后科研项目择优资助,2018.01-2018.12,主持9. 钌-固体酸双功能炭基催化剂的构建及在一步催化转化乙酰丙酸制γ-戊内酯反应中的应用,浙江省自然科学基金,2017.01-2019.12,参与 科研成果 [1] Lan Guojun*, Li Zhenqing, Han Xiaojia, Zhang Liping, Qiu Yiyang, Sun Xiucheng, Cheng Zaizhe, Li Ying*, Modulating the surface structure of nanodiamonds to enhance the electronic metal–support interaction of efficient ruthenium catalysts for levulinic acid hydrogenation, New Journal of Chemistry, 2023, 47, 6258–6265[2] Wang Xiaolong, Fan Dong, Lan Guojun, Cheng Zaizhe, Sun Xiucheng, Qiu Yiyang, Han Wenfeng, Tang Haodong, Liu Huazhang, Zhu Yihan, Hu Xiaojun, Li Ying*, The reaction mechanism of acetylene hydrochlorination on defective carbon supported ruthenium catalysts identified by DFT calculations and experimental approaches, Inorganic Chemistry Frontiers, 2022, 9, 458-467[3] Qian Lihua, LanGuojun*, Liu Xiaoyan, Li Zhenqing, Li Ying*,Aqueous-phase hydrogenation of levulinic acid over carbon layer protected silica-supported cobalt-ruthenium catalysts, Chinese Journal of Chemical Engineering, 2021, 38, 114-122[4] Lan Guojun#, Yang Jing #, Ye Run-Ping, Boyjoo Yash, Liang Ji, Liu Xiaoyan, Li Ying*, Liu Jian*, and Qian Kun*, Sustainable Carbon Materials toward Emerging Applications, Small Methods, 2021, 2001250[5] Liu Xiaoyan, Lan Guojun*, Li Zhenqing, Qian Lihua, Liu Jian, Li Ying*, Stabilization of Heterogeneous Hydrogenation Catalysts for the Aqueous-Phase Reactions of Renewable Feedstocks, Chinese Journal of Catalysis, 2021, 42: 694–709[6] Liu Xiaoyan, Ye Sheng, Lan Guojun, Su Panpan, Zhang Xiaoli, Price Cameron Alexander Hurd, Li Ying *, and Liu Jian *, Atomic Pyridinic Nitrogen Sites Promoting Levulinic Acid Hydrogenations over Double-Shelled Hollow Ru/C Nanoreactors, Small2021, 17, 2101271[7] Lan Guojun, Ye Qingfeng, Zhu Yihan, Tang Haodong*, Han Wenfeng, Li Ying *, Single-Site Au/Carbon Catalysts with Single-Atom and Au Nanoparticles for Acetylene Hydrochlorination, ACS Applied Nano Materials, 2020, 3, 3004-3010[8] Lan Guojun, Qiu Yiyang, Fan Jiangtao, Wang Xiaolong, Tang Haodong, Han Wenfeng, Liu Huazhang, Liu Hongyang*, Song Shuang, Li Ying*, Defective graphene@diamond hybrid nanocarbon material as effective and stable metal-free catalyst for acetylene hydrochlorination, Chemical Communications, 2019, 55(10), 1430-1433[9] Lan Guojun, Wang Yan, Qiu Yiyang, Wang Xiaolong, Liang Ji, Han Wenfeng, Tang Haodong, Liu Huazhang, Liu Jian*, Li Ying*, Wheat flour-derived N-doped mesoporous carbon extrudate as superior metal-free catalysts for acetylene hydrochlorination, Chemical Communications, 2018, 54(6): 623~626 [10] Lan Guojun, Zhou Yaping, Shen Hangjia, Tang Haodong, Li Ying*, Formation mechanism of highly dispersed semi-embedded ruthenium nanoparticles in porous carbon matrix determined by in situ temperature-programmed infrared spectroscopy, Chinese Journal of Catalysis, 2018, 39(1): 146~156[11] Lan Guojun, Yang Yong, Wang Xiaolong, Han Wenfeng, Tang Haodong, Liu Huazhang, Li Ying*, Direct synthesis of mesoporous nitrogen doped Ru-carbon catalysts with semi-embedded Ru nanoparticles for acetylene hydrochlorination. Microporous Mesoporous Material, 2018, 264, 248-253 内容来自集群智慧云企服 实用新型专利1875代写全部资料全国受理