欢迎光临武汉理工大学安全科学与应急管理学院!

职称:副教授、博士生导师
电话:13628655859
邮箱:daihm@whut.edu.cn
研究方向:清洁能源安全高效利用、氢能绿色制取、新能源热电系统、生物质能资源化、防火防爆技术、安全评价与风险管控等
个人简介
代华明,男,1987年7月,工学博士,副教授,博士生导师,安全科学与工程系教师,2016年获中国矿业大学安全科学与工程博士学位(硕博连读)。2022-2023年国家公派新加坡国立大学访问学者。担任Int J Min Sci Technol、《爆破》等期刊青年编委,Fire期刊编委,Sustainability等期刊客座编辑,连续入选全球前2%顶尖科学家榜单。担任国家自然科学基金函评专家、教育部学位中心论文评审专家、湖北省科技厅评审专家等。主要从事清洁能源安全高效利用、氢能绿色制取、新能源热电系统、生物质能资源化、防火防爆技术、安全评价与风险管控等方面的教学科研工作。主讲《防火防爆技术》、《安全经济与管理学》、《风险分析与安全评价》等本科及研究生课程。主持国家自然科学基金(青年/面上)、湖北省自然科学基金、武汉市知识创新专项、重点实验室开放基金等科研项目10余项,并作为骨干参与国家重点研发计划等项目20余项。以第一作者或通讯作者在Applied Energy、Energy等高水平SCI期刊发表论文80余篇,其余期刊发表论文共计120余篇,授权国家专利40余项,获省部级奖3项。担任Proceedings of the Combustion Institute、Process Safety and Environmental Protection等50余个知名SCI学术期刊审稿人。指导本科生分别获得全国安全科学与工程大学生实践与创新作品大赛一等奖1项、二等奖1项、三等奖1项;指导本科生和硕士生多次获得校级优秀毕业论文。
主要科研项目
1. 国家自然科学基金项目(面上),主持
2. 国家自然科学基金项目(青年),主持
3. 湖北省自然科学基金项目,主持
4. 武汉市知识创新专项(基础研究项目),主持
5. 煤炭资源与安全开采国家重点实验室开放基金,主持
6. 煤矿瓦斯与火灾防治教育部重点实验室开放基金,主持
7. 中央高校基本科研业务费专项资金(2017),主持
8. 中央高校基本科研业务费专项资金(2019),主持
9. 企业横向项目(2025,中船),主持
10. 国家重点研发计划项目子课题,主研
主要学术论文(25篇以内)
1. Zou C, Dai H*, Ge X. Fuel staging strategy in porous media reforming reactor with the enhancing of metal catalyst for efficient heat‑hydrogen production. Applied Thermal Engineering. 2026.
2. Gao X, Dai H*. Thermochemical conversion of renewable biomass-charcoal mixture for cleaner hydrogen production through an efficient heat recirculating system. Process Safety and Environmental Protection. 2026
3. Dai H*, Xu W. Characteristics of reactive biomass combustion by the optimization of central activating substance with efficient thermal recycling. Energy. 2025.
4. Dai H*, Wei X, Cui Q. Development of a co-catalytic combustion system with the integration of non-stoichiometric hexaaluminate and NiO to improve methane partial oxidation. Separation and Purification Technology. 2025.
5. Li Z, Dai H*, Zhai C. Integrated porous self-sustaining combustion of inert pellets and reactive wood lamellae with additives: Dynamic co-production method for heat and hydrogen. Energy. 2024.
6. Dai H, Gao X. Development of integrated reactive system based on co-combustion of wood biomass and plastic: Efficient hydrogen and methane production. Journal of Cleaner Production. 2024.
7. Dai H, Wang H, Song Z. Design of multifunctional catalytic reactor for methane partial oxidation by combining Mn-hexaaluminate and MgO with uniform and non-uniform mixing methods. Applied Energy. 2024.
8. Wang H, Dai H*. Isovalent substituted La-Gd-Cr perovskite for the cleaner hydrogen production during partial oxidation methane in catalytic packed bed. Fuel. 2023.
9. Dai H, Wang H. Combination of co-doped Ce-Mn perovskite with different spacial distributions for methane catalytic reforming reactor to realize functional partition. Chemical Engineering Journal. 2023.
10. Zhang B, Dai H*, Dai H, Wang Z. Inhomogeneous packed bed burner for improving the utilization of low-concentration methane. Environmental Progress & Sustainable Energy. 2022.
11. Dai H*, Dai H. Efficient lean combustion in a novel porous medium burner with the integrated of pellets and ceramic foam: Experimental study of flame propagation and stability. Combustion and Flame. 2022
12. Yin H, Dai H*, Liang G. Inhibition evaluation of magnesium hydroxide, aluminum hydroxide, and hydrotalcite on the flame propagation of coal dust. Process Safety and Environmental Protection. 2022.
13. Wang Z, Dai H*, Wang Z. Experimental study on improving the efficiency of hydrogen production by partial oxidation of ethanol. International Journal of Hydrogen Energy. 2022.
14. Dai H, Dai H*. Green hydrogen production based on the co-combustion of wood biomass and porous media. Applied Energy. 2022.
15. Dai H, Yin H, Zhai C. Experimental investigation on the inhibition of coal dust deflagration by the composite inhibitor of floating bead and melamine cyanurate. Energy. 2022.
16. Wang X, Dai H*, Yin H, Liang G, Chen X. Effects of typical inhibition materials on the flame propagation of pulverized coal mixture. Powder Technology. 2022.
17. Dai H, Zhu H. Enhancement of partial oxidation reformer by the free-section addition for hydrogen production. Renewable Energy. 2022.
18. Zhu H, Dai H*, Song Z, et al. Improvement of hollow cylinders on the conversion of coal mine methane to hydrogen in packed bed burner. International Journal of Hydrogen Energy, 2021.
19. Dai H, Dai H*, Zhu H, et al. Combustion characteristics of a low calorific gas burner with ceramic foam enclosed by alumina pellets. Heat and Mass Transfer, 2021.
20. Wang X, Dai H*, Liang G, et al. Flame propagation characteristics of mixed pulverized coal at the atmosphere of gasification. Fuel, 2021.
21. Liang G, Dai H*, Yin H, et al. Inhibition characteristics of coal dust explosion at the gasification atmosphere. Advanced Powder Technology, 2021.
22. Nan X, Dai H*, Chen X, et al. Scale effect of porous mesh on the inhibition mechanism of wheat dust flame. Journal of Thermal Analysis and Calorimetry, 2021.
23. He S, Shi G, Xiao H, Sun G, Shi Y, Chen G, Dai H*, et al. Self S-doping activated carbon derived from lignin-based pitch for removal of gaseous benzene. Chemical Engineering Journal, 2021.
24. He S, Ruan C, Shi Y, Chen G, Ma Y, Dai H*, et al. Insight to hydrophobic SiO2 encapsulated SiO2 gel: Preparation and application in fire extinguishing. Journal of Hazardous Materials, 2021.
25. 赵齐, 陈先锋, 代华明*,等.稀土金属材料填充方式对预混气体爆炸特性抑制研究.爆炸与冲击.2019.
主要授权专利(10项以内)
1. 一种基于堆积床结构的均匀性测试系统及方法(202210885404.8),序1;
2. 一种高温燃烧气氛下堆积床结构多元检测系统及方法(202210883250.9),序1;
3. 一种液体燃料燃烧工况参数测量装置及方法(202010340696.8),序1;
4. 一种基于煤气化炉体结构的立体式智能检测抑爆方法(201910799599.2),序1;
5. 一种精准自预热式安全节能型蓄热燃烧系统(201822080945.5),序1;
6. 一种双循环式多孔介质智能精准换热系统(201711191570.3),序1;
7. 一种煤矿上行孔瓦斯自然衰减流量测量装置(201520449568.1),序1;
8. 一种二维温度测量多孔介质燃烧器(201520002832.7),序1;
9. 一种瑞士卷式气水分离器及方法(201310196996.3),序2;
10. 一种脉动多孔介质燃烧发电系统(201210426197.6),序2。
主要获奖情况:
1. 瓦斯资源化开发及阶梯式利用关键技术研究与工程示范. 获中国煤炭工业协会科技进步一等奖;
2. 单一低透煤层增透机制和有效抽采瓦斯技术原理研究与应用. 获中国煤炭工业协会科技进步二等奖;
3. 曾获中国发明协会“发明创业奖创新奖”二等奖、全国安全科学与工程大学生实践与创新作品大赛优秀指导教师、武汉理工大学校级优秀班主任、校级社团安全协会优秀指导教师等;
4. 曾获中国矿业大学优秀博士论文、优秀毕业生、研究生国家奖学金、优秀创新博士研究生奖学金、瓦斯-好学奖学金等。