Personal profile
Personal profile
The research team of Li Miyi, Institute of Chemical Engineering, School of Chemistry and Chemical Engineering, Beijing Institute of Technology, has conducted an in-depth study on the application of solvation free energy to chemical phase equilibrium behavior through the method of combining experiment and theoretical calculation. The problems of solid-liquid balance and vapor-liquid balance were discussed, and the selection of salt distillation process and extractive distillation entraining agent was studied.
Research Interests
My research direction is mainly in the field of chemical molecular thermodynamics calculation, aiming to explore the basic physical property parameters, phase equilibrium behavior, separation and purification methods and the design of new separation media in chemical engineering through molecular simulation methods and basic thermodynamic theoretical framework. 1. Build a thermodynamic model of electrolyte solution and apply it to the solid-liquid equilibrium relationship of salt separation and purification, as well as the salting out and salt dissolution effects in the rectification process. The molecular dynamics model and calculation scheme of thermodynamic properties of solution are developed. 2. Develop electrochemical sensors and develop new gel electrolyte systems.
Education
2007.09-2012.01 Beijing Institute of Technology, Applied Chemistry major, Doctor of Engineering.
2000.09-2003.01 Beijing Institute of Technology, major in Inspection Technology and automatic flower device, Master of Engineering.
1995.09-1999.07 Naval University of Engineering, Electrical Technology major, Bachelor of Engineering.
2000.09-2003.01 Beijing Institute of Technology, major in Inspection Technology and automatic flower device, Master of Engineering.
1995.09-1999.07 Naval University of Engineering, Electrical Technology major, Bachelor of Engineering.
Professional Experience
2020.03-present, School of Chemistry and Chemical Engineering, Beijing Institute of Technology, Lecturer.
Research Achievement
Presided over one project of the National Natural Science Foundation, the third batch of the "13th Five-Year Plan" explosive special project of the State Administration of Science, Technology and Industry for National Defense, one vertical project, and undertook more than ten enterprise cooperation projects. So far, he has published many academic papers in academic journals and conferences at home and abroad. The thermodynamic properties of chemical processes were taken as the object to carry out molecular dynamics simulation research. With new materials as the guidance, the development of electrochemical gas sensor, patent application and realization of the transformation and application of technical achievements.
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Prediction of CO2 absorption in aqueous 1DMA2P solutions using thermodynamics and molecular dynamic simulations
Li, M., Lv, C., Zhao, F., Lv, L., Fang, T., Hao, L., Dong, X. & Liu, H., Oct 2025, In: AIChE Journal. 71, 10, e18917.Research output: Contribution to journal › Article › peer-review
1 Link opens in a new tab Citation (Scopus) -
The investigation of the reaction mechanism of CO2 in HMDA/DEEA and EAE/1DMA2P aqueous solution systems
Lv, C., Deng, Y., Zhao, D., Li, M. & Liu, H., Dec 2025, In: Green Chemical Engineering. 6, 4, p. 582-590 9 p.Research output: Contribution to journal › Article › peer-review
Open Access2 Link opens in a new tab Citations (Scopus) -
A comprehensive model analysis of activity coefficients and thermodynamic properties of EAE-1DMA2P blended solvent
Bai, L., Wang, S., Zhao, D., Wu, W., Chen, D., Li, M., Aminabhavi, T. M. & Liu, H., 15 Aug 2024, In: Chemical Engineering Science. 296, 120271.Research output: Contribution to journal › Article › peer-review
7 Link opens in a new tab Citations (Scopus) -
Low-energy electrochemical CO2-amine desorption driven by the proton-coupled electron transfer reaction (PCET)
Zhao, F., Deng, Y., Li, M., Lv, C., Aminabhavi, T. M., Orhan, O. Y. & Liu, H., 1 Sept 2024, In: Chemical Engineering Journal. 495, 153217.Research output: Contribution to journal › Article › peer-review
15 Link opens in a new tab Citations (Scopus) -
Amine-functionalized hierarchically porous carbon supported Pd nanocatalysts for highly efficient H2 generation from formic acid with fast-diffusion channels
Shao, X., Miao, X., Tian, F., Bai, M., Guo, X., Wang, W., Zhao, Z., Ji, X., Li, M. & Deng, F., Jan 2023, In: Journal of Energy Chemistry. 76, p. 249-258 10 p.Research output: Contribution to journal › Article › peer-review
21 Link opens in a new tab Citations (Scopus)