Dr. Xiaowei Zhou
The Chemours Company, USA
Email: [email protected]
Qualifications
2012 Ph.D., Xi’an Jiaotong University, China, Chemical Engineering
2009 M.Sc., Xi’an Jiaotong University, China, Chemical Engineering
2007 B.Sc., Chang’an University, China, Chemical Engineering &
Technology
Publications (Selected)
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Zhou, X., Brentzel, Z. J., Kraus, G. A., Keeling, P. L., Dumesic, J. A., Shanks, B. H., & Broadbelt, L. J. (2018). Computational framework for the identification of bioprivileged molecules. ACS Sustainable Chemistry & Engineering, 7(2), 2414-2428.
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Zhou, X., Li, W., Mabon, R., & Broadbelt, L. J. (2018). A mechanistic model of fast pyrolysis of hemicellulose. Energy & environmental science, 11(5), 1240-1260.
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Zhou, X., Li, W., Mabon, R., & Broadbelt, L. J. (2017). Inside Back Cover: A Critical Review on Hemicellulose Pyrolysis (Energy Technol. 1/2017). Energy Technology, 5(1), 217-217.
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Zhou, X., Li, W., Mabon, R., & Broadbelt, L. J. (2017). A critical review on hemicellulose pyrolysis. Energy Technology, 5(1), 52-79.
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Zhou, X., Broadbelt, L. J., & Vinu, R. (2016). Mechanistic understanding of thermochemical conversion of polymers and lignocellulosic biomass. Advances in chemical engineering, 49, 95-198.
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Zhou, X., Mayes, H. B., Broadbelt, L. J., Nolte, M. W., & Shanks, B. H. (2016). Fast pyrolysis of glucose‐based carbohydrates with added NaCl part 2: Validation and evaluation of the mechanistic model. AIChE Journal, 62(3), 778-791.
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Zhou, X., Mayes, H. B., Broadbelt, L. J., Nolte, M. W., & Shanks, B. H. (2016). Fast pyrolysis of glucose‐based carbohydrates with added NaCl part 1: Experiments and development of a mechanistic model. AIChE Journal, 62(3), 766-777.
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Pan, Y., Yang, B., & Zhou, X. (2015). Feedstock molecular reconstruction for secondary reactions of fluid catalytic cracking gasoline by maximum information entropy method. Chemical Engineering Journal, 281, 945-952.
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Burnham, A. K., Zhou, X., & Broadbelt, L. J. (2015). Critical review of the global chemical kinetics of cellulose thermal decomposition. Energy & Fuels, 29(5), 2906-2918.
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Zhou, X., Nolte, M. W., Mayes, H. B., Shanks, B. H., & Broadbelt, L. J. (2014). Experimental and mechanistic modeling of fast pyrolysis of neat glucose-based carbohydrates. 1. Experiments and development of a detailed mechanistic model. Industrial & Engineering Chemistry Research, 53(34), 13274-13289.
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Zhou, X., Nolte, M. W., Shanks, B. H., & Broadbelt, L. J. (2014). Experimental and mechanistic modeling of fast pyrolysis of neat glucose-based carbohydrates. 2. Validation and evaluation of the mechanistic model. Industrial & Engineering Chemistry Research, 53(34), 13290-13301.
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Zhou, X., Wu, X., Yang, B., & Xiao, J. (2012). Varying the ratio of formic acid to triethylamine impacts on asymmetric transfer hydrogenation of ketones. Journal of Molecular Catalysis A: Chemical, 357, 133-140.
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Yuan, H., Yang, B., Zhang, H., & Zhou, X. (2011). Synthesis of biodiesel using castor oil under microwave radiation. International Journal of Chemical Reactor Engineering, 9(1).
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Zhou, X., Chen, T., Yang, B., Jiang, X., Zhang, H., & Wang, L. (2011). Kinetic model considering reactant oriented selective deactivation for secondary reactions of fluid catalytic cracking gasoline. Energy & fuels, 25(6), 2427-2437.
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Zhou, X., Yang, B., Yi, C., Yuan, J., & Wang, L. (2010). Prediction model for increasing propylene from FCC gasoline secondary reactions based on Levenberg–Marquardt algorithm coupled with support vector machines. Journal of chemometrics, 24(9), 574-583.
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Yang, B., Zhou, X., Chen, C., Yuan, J., & Wang, L. (2008). Molecule simulation for the secondary reactions of fluid catalytic cracking gasoline by the method of structure oriented lumping combined with Monte Carlo. Industrial & engineering chemistry research, 47(14), 4648-4657.
Profile Details
WoS ResearcherID: K-6100-2014
https://x.com/chemours/status/1818647072343511409
https://www.linkedin.com/in/xiaowei-zhou-64a5575a/
https://scholar.google.com/citations?user=V_spsEcAAAAJ&hl=en
https://www.researchgate.net/profile/Xiaowei-Zhou-12