Fengwu Bai
Life Science
Shanghai Jiao Tong University
Shanghai
Language: Chinese, English
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Biomass Biorefining Lignocellulose Structural Analysis Enzymes Microbial Strains Bio-Process Carbon Use Fermentation Biochemical Conversion
Areas of Focus
  • Lignocellulosic biomass biorefining and product production
  • Structural analysis of lignocellulosic biomass
  • Development of efficient biocatalytic enzymes and microbial strains
  • Bio-process engineering based on cascading use of carbon resources
Work Experience
  • 2013/01-present: Shanghai Jiao Tong University, School of Life Sciences and Technology, Distinguished Professor
  • 1999/07-2017/06: Dalian University of Technology, School of Chemical Engineering/Life Sciences and Technology, Professor
  • 2010/04-2010/12: MIT, Department of Chemical Engineering, Visiting Professor
  • 2002/10-2003/07: University of Waterloo, Department of Chemical Engineering, Visiting Scholar
  • 1999/08-2000/02: Ohio University, Department of Chemical Engineering, Visiting Scholar
  • 1995/07-1999/06: Dalian University of Technology, School of Chemical Engineering, Associate Professor
  • 1990/07-1995/06: Dalian University of Technology, School of Chemical Engineering, Lecturer
  • 1988/06-1990/06: Dalian University of Technology, School of Chemical Engineering, Teaching Assistant
Academic Background & Achievements
  • 2005/05-2007/05: University of Waterloo, Department of Chemical Engineering, PhD in Engineering
  • 1985/09-1988/06: Dalian University of Technology, School of Chemical Engineering, Master's in Chemical Engineering
  • 1981/09-1985/07: Dalian University of Technology, Bachelor's in Chemical Engineering Machinery
Publications
  • Making the biochemical conversion of lignocellulose more robust, Zhao XQ, Liu CG, Bai FW, 2024
  • Anaerobic digestion integrated with microbial electrolysis cell to enhance biogas production and upgrading in situ, Ao TJ, Liu CG, Sun ZY, Zhao XQ, Tang YQ, Bai FW, 2024
  • Intracellular accumulation of c‐di‐GMP and its regulation on self‐flocculation of the bacterial cells of Zymomonas mobilis, Li K, Xia J, Liu CG, Zhao XQ, Bai FW, 2023
  • Deciphering molecular mechanism underlying self-flocculation of Zymomonas mobilis for robust production, Cao LY, Yang YF, Zhang X, Chen YH, Yao JW, Wang X, Xia J, Liu CG, Yang SH, Römling U, Bai FW, 2022
  • Omics analysis reveals mechanism underlying metabolic oscillation during continuous very-high-gravity ethanol fermentation by Saccharomyces cerevisiae, Zhang X, Wang L, Li Q, den Haan R, Li F, Liu CG, Bai FW, 2021
  • Identification of a novel repressor encoded by the putative gene ctf1 for cellulase biosynthesis in Trichoderma reesei through artificial zinc finger engineering, Meng QS, Zhang F, Liu CG, Zhao XQ, Bai FW, 2020
  • Engineering Zymomonas mobilis for robust cellulosic ethanol production, Xia J, Yang YF, Liu CG, Yang SH, Bai FW, 2019
  • Cellulosic ethanol production: Progress, challenges and strategies for solutions, Liu CG, Xiao Y, Xia XX, Zhao XQ, Peng L, Srinophakun P, Bai FW, 2019
  • Contribution of cellulose synthesis, formation of fibrils and their entanglement to the self-flocculation of Zymomonas mobilis, Xia J, Liu CG, Zhao XQ, Xiao Y, Xia XX, Bai FW, 2018
  • Engineering Trichoderma reesei Rut-C30 with the overexpression of egl1 at the ace1 locus to relieve repression on cellulase production and to adjust the ratio of cellulolytic enzymes for more efficient hydrolysis of lignocellulosic biomass, Meng QS, Liu CG, Zhao XQ, Bai FW, 2018
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