• 姓名: 李城
  • 职称: 讲师
  • 学位: 博士
  • 河南农业大学
  • 林学院
李城,男,1987年2月出生,湖南郴州人,中共党员,博士
研究领域:林木资源高值化利用、生物质胶黏剂、木基新材料、生物质能源、生物质碳材料
E-mail: licheng@henau.edu.cn/ lichengzzm@163.com
教育与研究/工作经历
2018.07- 至今   博士后、讲师、硕士研究生导师 河南农业大学 林学院| 林学
2010.09-2018.07  硕博连读| 北京林业大学| 材料科学与技术学院| 木材科学与技术
2015.098-2017.09   联合培养,访学 | 华盛顿州立大学(美国) | 复合材料与工程中心
2006.09-2010.07     本科 | 中南林业科技大学 | 木材科学与工程
主讲课程
林产品加工与利用、森林资源学、木材学
科研项目
1 河南农业大学青年英才项目,2020.09-2025.09,经费50万元
2. 河南省高等学校重点科研项目,2021.01-2022.01,经费3万元
近五年代表性论文
1. Production of modified biochar to treat landfill leachate using integrated microwave pyrolytic CO2 activation,Chemical Engineering Journal, 2021.(SCI,中科院一区,IF:13.27,通讯作者)
2. Development of soybean-based adhesive with high tough, water-resistance and mildew-proof via ingenious multiple crosslinking cooperation strategy, Journal of Cleaner Production,2021. (SCI,中科院一区,IF:9.27,通讯作者)
3. Bioinspired mineral-organic hybridization strategy to produce a green high performance soybean meal based adhesive, Journal of Cleaner Production, 2021. (SCI, 中科院一区,IF:9.27,通讯作者)
4. Proposal and comprehensive analysis of an innovative CCP plant based on an internal integration of double flash power system and ejector refrigeration cycle. Energy Conversion and Management, 2020. (SCI, 中科院一区,IF:9.7,通讯作者)
5. Processed bamboo as a novel formaldehyde-free high-performance furniture biocomposite, ASC Applied Materials & interfaces, 2020 (SCI, 中科院一区,IF:8.75,第四)
6. Catalytic Fast Pyrolysis of Forestry Wood Waste for Bio-Energy Recovery Using Nano-Catalysts, Energies, 2019. (SCI, 三区,IF:2.7, 第一作者) 
7. Pyrolysis molecule of Torreya grandis bark for potential biomedicine, Saudi Journal of Biological Sciences, 2019 (SCI, 三区,IF:2.8,通讯作者).
8. Structural properties and copolycondensation mechanism of valonea tannin-modified phenol-formaldehyde resin [J]. Journal of polymers and the environment, 2018 (SCI, 三区,IF:2.8,第一作者)
9. Preparation and characterization of a novel environmentally phenol-formaldehyde adhesive modified with tannin and urea. International Journal of adhesion and adhesives, 2016 (SCI, 三区,IF:2.5,第一作者)
10. Reactivity of Larch and Valonia tannins in synthersis of tannin-formaldehyde resins. Bioresources, 2016 (SCI, 三区,IF:1.4,共同第一作者).