Lei SHAO头像

Lei SHAO

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Fields : High gravity technology
Professor 
Department : Department of Chemical Engineering
Degree:
ORCID:
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Introduction

Prof. Lei SHAO obtained his PhD at the University of Science and Technology Beijing, China in 2000, and then conducted postdoctoral research at the Research Center of the Ministry of Education for High Gravity Engineering and Technology, Beijing University of Chemical Technology (BUCT) before he joined the faculty of College of Chemical Engineering, BUCT in 2002. He has been focusing on the research of high-gravity (HiGee) technology since then, with interests in its applications in separation, reaction and nanoparticle preparation. Dr. Shao is a full professor since 2005 and has published 210 peer-reviewed papers and filed more than 40 patents.

Education

Work Experience

Social Position

Social Activities

Research

Prof. Lei Shao’s research interests focus on the high-gravity technology and its applications to environmental protection and particles synthesis.

Teaching

Undergraduate course: Chemical Process Safety and Environmental Protection

Graduate course: Principle and Application of High Gravity Technology

Postgraduates

Funding

National Natural Science Foundation of China: Study on the intensification mechanism and process of removing antibiotic-resistant genes in water by ozone under the high-gravity environment

Vertical Project

Horizontal Project

Publications

Selected publications in the past three years:

1.   Hao Xiao, Tianyang Wu, Yunhua Song, Jianming Chen, Yang Xiang, Jimmy Yun*, Lei Shao*. Selective Absorption of HCl from a Gas Mixture with CO2 by Alkali Solution in a Rotor-Stator Reactor. Industrial & Engineering Chemistry Research,2024, 63(4), 2057-2062

2.   Hao Xiao, Yunhua Song, Jianming Chen, Hao Ma, Li Wang, Yang Xiang, Lei Shao*. Integrated high-gravity process for HCl removal and CO2 capture using carbide slag slurry in a rotor-stator reactor: Experimental and modeling studies. Chemosphere, 2023, 340, 139848

3.   Hao Xiao, Hui Jin, Tianyang Wu, Yinlong Zhang, Peng Jiang, Lei Shao*. HCl removal and recovery using choline chloride-glycerol deep eutectic solvent in rotor-stator reactor: Molecular mechanism, experimental and modeling studies. Fuel, 2023, 334: 126818

4.   Yinlong Zhang, Yunhua Song, Hui Jin, Tianyang Wu, Hao Xiao, Jimmy Yun*, Lei Shao*. Study on CO2 absorption by novel choline chloride-diethylenetriamine-water deep eutectic solvents in a rotor-stator reactor. Chemical Engineering & Processing - Process Intensification, 2023, 184: 109299

5.   Peng Xu, Tianyang Wu, Yang Xiang, Jimmy Yun, Lei Shao*. Enhanced Treatment of Basic Red 46 by Ozonation in a Rotating Packed Bed with Liquid Detention. Processes, 2023, 11(5), 1345.

6.   Arash Esmaeili, Amin Tamuzi, Tohid N. Borhani, Yang Xiang, Lei Shao*. Modeling of carbon dioxide absorption by solution of piperazine and methyldiethanolamine in a rotating packed bed. Chemical Engineering Science, 2022, 248: 117118

7.   Lei Wang, Chu Qi, Yuan Lu, Moses Arowo, Lei Shao*. Degradation of Bisphenol A by Ozonation in a Rotating Packed Bed: Modelling by Response Surface Methodology and Artificial Neural Network. Chemosphere, 2022, 286: 131702

8.   Hao Xiao, Hao Ma, Lei Wang, Zhibang Liu, Zhenjun Yang, Jinghui Dong, Lei Shao*. Intensification of HCl removal from flue gas using a rotor-stator reactor. Fuel, 2022, 310: 122335

9.   Hao Xiao, Lei Wang, Zhibang Liu, Baochang Sun, Guangwen Chu, Yunhua Song, Lei Shao*. Study on Effective Mass-transfer Area and Local Gas-side Mass-transfer Coefficient in a Rotor-stator Reactor. Industrial & Engineering Chemistry Research, 2022, 61 (3): 1523-1530

10.    Huapeng Ma, Zemeng Zhao, Yuanteng Shi, Hao Xiao, Rong Han, Lei Wang, Lei Shao*. Advanced treatment of coal gasification wastewater by O3/Fenton in a rotating packed bed in tandem with coagulation. Chemical Engineering and Processing - Process Intensification, 2022, 170: 108664


Awards

Patent

Honor Reward

Admissions Information

  • Tel:
  • Email: shaol@mail.buct.edu.cn
  • PostCode:
  • Office Location: A503, Chemical Engineering Building
  • Address:

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