OB体育, OB体育官网,OB体育官方网站入口,OB体育比分,OB体育体育资讯

Chemical Engineering and Technology

Guohua Luo




Guohua Luo, male, born in 1966. He obtained his Bachelor's degree in Organic Chemical Engineering from Dalian University of Technology in 1989 and Master's degree in Chemical Technology from Dalian University of Technology in 1994. His research focuses on catalytic processes and engineering related to oil purification, including new purification processes, materials and technologies; desulfurization technologies for vehicle fuels and coking aromatics and their industrial applications; ultra-deep desulfurization materials for aromatics and their industrial applications; desulfurization adsorbents for light hydrocarbons (C4, C5) and their applications. He has conducted extensive research in selective catalytic alkylation of aromatics, application of zeolite molecular sieves and acidic ionic liquids in alkylation of aromatics to synthesize basic organic chemical raw materials and fine organic intermediates, as well as development of new hydrofining catalytic materials and their applications in hydrofining of coking oils, hydrogenation modification of resins, hydrocracking and hydrogenolysis of biomass polyols. He has presided over and participated in more than 20 research projects commissioned by Sinopec Group, Beijing Municipal Education Commission and enterprises. He led the 100,000 tons/year industrial trial of coking crude benzene refining, creating benefits for enterprises. The high sulfur capacity ultra-deep desulfurization adsorbent he developed has been applied in Sinopec's 80kt/year aromatic desulfurization unit. The selective aromatic alkylation processes for synthesizing tert-butylbenzene and p-tert-butyltoluene have passed 2000 tons/year industrial pilot tests and pilot-scale tests respectively. He has published about 70 papers in core domestic and international journals including Catalysis Communications, Journal of Rare Earths, Chinese Journal of Catalysis, China Petroleum Processing & Petrochemical Technology, Journal of Fuel Chemistry and Technology, and Journal of Molecular Catalysis, with 27 indexed by SCI/EI. He has applied for 9 invention patents and holds 5 authorized patents.

I. Major Research Projects

  1. Industrial Technology Development: 100,000 tons/year coking aromatic refining and desulfurization industrial technology, 2009-2012
  2. Industrial Technology Development: 80kt/year mixed aromatic deep desulfurization industrial technology, 2012-2013
  3. Beijing Municipal Education Commission Industrial Technology Development: Industrial trial production and application technology of new high-efficiency desulfurization adsorbent, 2013
  4. Industrial Technology Development: Preparation, modification and application of polystyrene polymer bead materials, 2015-2016
  5. Industrial Technology Development: Process research and catalyst evaluation and screening for crude glycerol hydrogenation, 2018
  6. Industrial Technology Development: Pilot study on catalytic deep desulfurization of benzene, 2018
  7. Industrial Technology Development: Scale-up production and application research of non-precious metal benzene fine desulfurization catalyst, 2019

II. Representative Academic Publications

  1. Luo Guohua, Yang Chunyu, Xu Xin. Method for preparing pure benzene and concentrated thiophene from crude benzene. ZL03140545.2, 2009-01-14.
  2. Luo Guohua, Yang Chunyu, Xu Xin. Method for catalytic synthesis of alkylbenzene from coking light benzene. ZL00135809.X, 2007-02-07.
  3. Luo Guohua, Xu Xin. Method for deep desulfurization and refining of coking benzene. ZL200610076167.1, 2006-04-28.
  4. Luo Guohua, Xu Xin, Yang Chunyu. Method for preparing sulfur-free benzene from coking light benzene. ZL01136012.7, 2006-04-19.
  5. Wang Huiguo, Wang Hongyu, Luo Guohua*, Xu Xin. Research progress on catalysts for glycerol hydrogenolysis to 1,2-propanediol. Chemical Industry and Engineering Progress, 2018, 37(6): 2214-2220.
  6. Luo Guohua, Wang Yanli, Sun Daming, Xu Xin, Jin Haibo. Effect of Preparation Process on Compressive Strength and Hydrogenation Performance of Raney-Ni/Al2O3 Catalyst. China Petroleum Processing and Petrochemical Technology, 2017, 19(2): 14-20.
  7. Chen Han, Luo Guohua, Xu Xin. Et3NHCl-AlCl3 Ionic Liquids as Catalyst for Alkylation of Toluene with 2-chloro-2-methlpropane. China Petroleum Processing and Petrochemical Technology, 2013, 15(5): 54-60.
  8. Yanli Wang, Guohua Luo*, Xin Xu, Jiajia Xia. Preparation of supported skeletal Ni catalyst and its catalytic performance on dicyclopentadiene hydrogenation. Catalysis Communications, 2014, 53:15-20.
  9. Yanli Wang, Guohua Luo*, Xin Xu, Jiajia Xia. Deactivation of supported skeletal Ni catalyst and effect of regeneration temperature on its catalytic performance. Catalysis Communications, 2014, 57:83-88.
  10. Chen Han, Luo Guohua*, Xu Xin. Triethylamine hydrochloride-aluminum chloride ionic liquid catalyzed alkylation of toluene with chlorotert-butane. Journal of Chemical Engineering of Chinese Universities, 2013, 27(2):217-221.
  11. Luo Guohua, Xu Xin*, Jin Haibo. Preparation of Raney-Ni-Mo/Al2O3 catalyst and its catalytic performance for indene saturation hydrogenation. Journal of Molecular Catalysis, 2013, 27(5): 406-412.
  12. Luo Guohua, Xu Xin, Shan Xilin, Tong Zemin, Peng Shaoyi. Deactivation mechanism of solid acid catalyst for alkylation sulfur transfer reaction between thiophene sulfides and olefins. Chinese Journal of Catalysis, 2004, 25(8): 648-652.
  13. Luo Guohua, Xu Xin, Tong Zemin, Guo Xinwen, Wang Xiangsheng. Selective adsorption of thiophene in coking benzene by zeolite molecular sieves. Journal of Fuel Chemistry and Technology, 1999, 27(5): 476-480.
  14. Wang Xiangsheng, Luo Guohua*. Refining desulfurization of coking benzene on HZSM-5 zeolite. Chinese Journal of Catalysis, 1996, 17(6): 530-534.