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俞瑞利

作者: 来源: 编辑:张栩宁 发布日期:2026-09-07 点击:

姓名

俞瑞利

出生年月

1994.11

性别

学历/学位

博士研究生

政治面貌

中共党员

职称

讲师

行政职务

导师类别

硕士生导师

招生专业

安全科学与工程,安全工程

研究方向

危险气体吸附MD+DFT计算AI辅助材料设计及合成,传质理论等

化工过程仿真:设备内流动、传热、传质耦合数值模拟等

化工系统工程化工过程动态模拟、故障诊断与安全分析

联系方式

rl-yu1130@qust.edu.cn

联系地址

青岛科技大学四方校区环境楼3017

学习和工作经历:

2025.07-至今   青岛科技大学

2020.09-2025.06 大连理工大学,安全科学与工程,工学博士

2017.09-2020.06 兰州理工大学,化工过程机械工学硕士

2013.09-2017.06 兰州理工大学,过程装备与控制工程,学士

代表性代表性论文、论著、专利:

1.累计发表SCI论文20余篇,近五年代表性论文如下

[1]. Yu, R., L. Xia and W. Tian, High-gravity process intensification for ultra-fast synthesis of thiol-functionalized MOFs: Iodine capture and mechanism. Chemical Engineering Journal, 2026. 543: p. 177949.

[2]. Yu, R., et al., Effect of improving the performance of pulsating heat pipes on heat transfer in an extruder. Experimental and Computational Multiphase Flow, 2025. 7(4): p. 537-550.

[3]. Yu, R., et al., C@MOF composite material for rapid and efficient capture of gaseous iodine. Chemical Engineering Journal, 2024. 489: p. 151423.

[4]. Yu, R., et al., Investigation of boiling heat transfer process in the barrel of a gravity heat pipe type extruder. International Journal of Heat and Mass Transfer, 2024. 219: p. 124928.

[5]. Yu, R., et al., Investigating the impact of amine-functionalized ZSM-5 with varying Si/Al ratios on the adsorption of radioactive gaseous iodine. Microporous and Mesoporous Materials, 2024. 365: p. 112893.

[6]. Yu, R., et al., Analysis of Radioactive Iodine Trapping Mechanism by Zinc-Based Metal–Organic Frameworks with Various N-Containing Carboxylate Ligands. ACS Applied Materials & Interfaces, 2023. 15(29): p. 35082-35091.

[7]. Yu, R., et al., Zn, O Co-adsorption based on MOF-5 for efficient capture of radioactive iodine. Process Safety and Environmental Protection, 2023. 174: p. 770-777.

[8]. Yu, R., et al., Precise regulation of active sites of MOFs for capture of iodine. Journal of Environmental Chemical Engineering, 2022. 10(6): p. 108779.

 

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