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刘威 |
博士,特聘副研究员,硕士生导师 |
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通讯方式:weiliu513@zzu.edu.cn |
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研究方向:微纳颗粒合成与改性、气固两相流动 |
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办公地点:化工实验中心320 |
个人简介
刘威,工学博士。1993年11月生,中共党员,河南南阳人。2024年12月毕业于东南大学动力工程及工程热物理专业,获博士学位;2025年1月起进入郑州大学机械与动力工程学院工作,任特聘副研究员。
研究方向围绕颗粒原子层沉积/化学气相沉积过程、催化颗粒和电池电极颗粒的表界面调控等展开,主持国家自然科学基金青年科学基金(C类)、河南省自然科学基金青年科学基金(C类)、中国博士后基金面上项目、化工过程强化山西省重点实验室项目、郑州大学“求是计划”科研启动费项目等,作为研究骨干参与国家重点研发项目、国家自然科学基金面上等项目等。已在Chemical Engineering Journal、Separation and Purification Technology、Powder Technology、化工学报等能源、化工领域期刊发表论文10多篇,并担任多个国际学术期刊的审稿人,《中国粉体技术》期刊青年编委。
研究方向
1、颗粒原子层沉积(ALD)/化学气相沉积(CVD)过程调控
2、气固两相流动与数值模拟
3、催化颗粒和电池电极颗粒的表界面优化。

欢迎能源动力、化工及机械类的同学们咨询报考硕士研究生!每年计划招收1-2名硕士研究生。
欢迎本科生同学提前进入课题组,参加科研训练和竞赛!长期招收本科科研训练若干。
在研项目
1. 国家自然科学基金青年科学基金(C类),国家自然科学基金委,2027.01-2029.12,主持;
2. 河南省自然科学基金青年科学基金(C类)项目:河南省科技厅,2026.01-2027.12,主持;
3. 中国博士后基金面上资助,中国博士后科学基金会,2026. 07-2028.06,主持;
4. 化工过程强化山西省重点实验室开放课题,化工过程强化山西省重点实验室,2025.06-2027.05,主持;
5. 郑州大学“求是计划”科研启动经费项目,郑州大学,2025.01-2026.12,主持。
课题组资源条件
课题组在研多项横纵向项目,与东南大学等国内一流高校长期合作,鼓励学生参与国内外学术交流。课题组实验平台完善,具备颗粒原子层沉积、催化反应、气相色谱、电池性能检测等装置与仪器,科研环境良好。学生研究课题经充分论证与前期预演,确保学生能够顺利地进入科研状态,做到劳有所获、研有所得。
发表论文
⟡ALD/CVD颗粒生长动力学模拟
[1] Wei. Liu, Jinhui. Zhao, Ming. Guo, Jing. Guo, Elucidating the mechanism of Al2O3 precursor evolution in CVD: Multiscale insights into AlCl3 hydrolysis kinetics and particle dynamics, Chemical Engineering Journal (2026) 174952.
[2] Wei. Liu, Hongjian. Tang, Daoyin. Liu, Combining density functional theory and CFD-PBM model to predict TiO2 nanoparticle evolution during chemical vapor deposition, Chemical Engineering Journal 454 (2023) 140174.
[3] Wei. Liu, Daoyin. Liu, Yingjuan. Zhang, Bo. Li, Numerical investigation of particle size distribution, particle transport and deposition in a modified chemical vapor deposition process, Powder Technology 407 (2022) 117616.
⟡颗粒ALD/CVD实验
[1] Wei. Liu, Daoyin. Liu, Hongjian. Tang, Zhenkun. Sun, Lunbo. Duan, Synergistic enhancement of Z-scheme (SiO2/TiO2)/Bi2WO6 heterojunction by oxygen vacancies and interfacial electric field for efficient degradation of antibiotics, Separation and Purification Technology 361 (2025) 131462.
[2] Wei. Liu, Zuyang. Zhang, Daoyin. Liu, Comparison of SiO2/TiO2 photocatalysts with different thicknesses synthesized by fluidized bed atomic layer deposition, Powder Technology 438 (2024) 119613.
[3] Wei. Liu, Daoyin. Liu, Zuyang. Zhang, Zenkun. Sun, Synthesis of core-shell nanostructured SiO2/TiO2 photocatalysts via atomic layer deposition in a fluidized bed with central tube, Particuology 91 (2024) 19-28.
[4] Wei. Liu, Daoyin. Liu, Malin. Liu, Effects of process parameters on preparation of Ti@SiO2 particles during fluidized bed chemical vapor deposition via design of experiments, Chemical Engineering Research and Design 187 (2022) 425-433.
⟡碳捕集技术
[1] Wei. Liu, Ye. Wu, Tianyi. Cai, Zhikang. Xu, Daoyin. Liu, Jiliang. Ma, Xiaoping. Chen, Dong. Liu, A molding method of Na2CO3/Al2O3 sorbents with high sphericity and low roughness for enhanced attrition resistance in CO2 sorption/desorption process via extrusion-spheronization method, Powder Technology 366 (2020) 520-526.
[2] Wei. Liu, Ye. Wu, Tianyi. Cai, Xiaoping. Chen, Dong. Liu, Use of nanoparticles Cu/TiO(OH)2 for CO2 removal with K2CO3/KHCO3 based solution: enhanced thermal conductivity and reaction kinetics enhancing the CO2 sorption/desorption performance of K2CO3/KHCO3, Greenhouse Gases: Science and Technology 9 (2019).
[3] Daoyin. Liu, Wei. Liu, Jiliang. Ma, Cai. Liang, Xiaoping. Chen, Investigation of CO2 Capture in Three-Dimensional Full-Loop Integrated Bubbling-Transport Bed Adsorber, Industrial & Engineering Chemistry Research 62(43) (2023) 17691-17700.
[4] Ye. Wu, Wei. Liu, Element doped sodium-based sorbents with high attrition resistance and CO2 capture capacity during CO2 sorption/desorption processes, Fuel 285 (2021).
