
基本信息:
姓名: 张栋
性别: 男
出生年月: 1989年4月
最高学历(学位): 博士研究生,工学博士
职称: 校聘副教授,硕士生导师
联系方式: zhangdong7301@hpu.edu.cn
一、教育及工作经历
2023.09—至今,河南理工大学化学化工学院,从事教学与科研工作;
2018.09—2023.06,郑州大学应用化学专业,获工学博士学位。
二、教学情况
主讲《工程热力学》、《氢能系统设计与组装》等课程,围绕化工与氢能领域人才培养需求,承担本科生课程教学及研究生培养工作。
二、科研领域与成果
主要从事固态储氢材料与系统理论模型及试验应用、关键金属超常过程强化与多相传递调控等方面研究。围绕固态储运氢装置吸放氢过程中的复杂氢-热耦合机制,开展高热导储氢材料开发、多物理场耦合模型构建与装置优化设计研究;围绕关键金属分离强化,开展微反应器传质与动力学调控研究。已发表学术论文10余篇,其中以第一作者或通讯作者在 Separation and Purification Technology、Chemical Engineering Science、International Journal of Hydrogen Energy、Applied Thermal Engineering、International Communications in Heat and Mass Transfer 等期刊发表SCI论文多篇。
三、科研项目
1. 国家自然科学基金委员会青年科学基金项目,微流控极端相比协同动力学萃取的过程调控对铼的超常富集提取机制研究(52404358),2025—2027,在研,主持;
2. 河南省高校基本科研业务费项目,基于数值模拟和数据驱动的大容量固态储氢装置协同热管理策略的研究(NSFRF2502043),2025—2027,在研,主持;
3. 河南理工大学博士基金项目,固态储氢装置的强化传热结构和操作条件优化的模拟研究(B2024-36),2024—2026,在研,主持。
四、代表性学术论文
1. Zhang D*, Ji L, Wang W, Chen J, Wang X, Han W, Liu B*. A multi-level performance framework for hydrogen desorption in a large scale hybrid heat exchanger metal hydride reactor[J]. International Communications in Heat and Mass Transfer, 2026, 175: 111040. (SCI 1区TOP)
2. Ji L, Zhang D*, Li W, Chen J, Wang X, Liu B*, Han W*. Numerical analysis of hydrogen absorption in a large-scale modular metal hydride reactor with a hybrid heat exchanger comprising an internal finned tube and an external helical coil[J]. International Journal of Heat and Mass Transfer, 2026, 256: 127987. (SCI 2区TOP)
3. Zhang D*, Ji L, Wang W, Li J, Zhao S, Fan Y, Liu B. Performance analysis of a large-scale metal hydride reactor with a finned-tube heat exchanger[J]. Applied Thermal Engineering, 2025, 280: 128423. (SCI 1区TOP)
4. Zhang D, Ji L, Wang W, Li J, Zhao S, Fan Y, Liu B*. Numerical simulation of hydrogen absorption in a large-scale metal hydride reactor equipped with dual-layer finned-tube heat exchangers[J]. International Journal of Hydrogen Energy, 2025, 149: 149950. (SCI 2区)
5. Zhang D, Fu L, Xu G, Zhang Y*. Segmented flow capillary microreactors for determination of kinetic rate constants of reactive zinc extraction system[J]. Chemical Engineering Science, 2022, 247: 117037. (SCI 2区TOP)
6. Zhang D, He F, Miao Z, Zhang Y*. Intensified extraction and separation of zinc from cadmium and manganese by a slug flow capillary microreactor[J]. Separation and Purification Technology, 2021, 267: 118564. (SCI 1区TOP)
7. Zhang D, Miao Z, Zhang Y*. Impinging Flow Reactor as a New Approach to Scaling-Up Microreactors for Enhanced Extraction and Separation of Zinc from Cadmium and Manganese[J]. Solvent Extraction and Ion Exchange, 2024, 42(3): 239-263. (SCI 3区)
8. He Y, Li M, Peng L, Yang T, Zhang D*, Zhang Y*. Continuous Flow Synthesis of 4-methyl-3-oxo-n-phenyl-pentanamide[J]. ChemistrySelect, 2024, 9(3): e202304182. (SCI 3区)
9. Zhang D, Cao R, Fu L, Zhang Y*. Experimental and numerical studies of separation intensification in segmented flow microreactors[J]. Chemical Engineering and Processing: Process Intensification, 2022, 176: 108905. (SCI 2区)