个人简介
李望良1978年出生,工学博士,研究员,博士生导师。2000年获得中国石油大学(华东)应用化学学士学位,2003年获得中国石油大学(华东)工业催化硕士学位,2007年于获得中国科学院过程工程研究所化学工艺专业博士学位,之后留所工作任助理研究员,2010年任副研究员,2010至2011年新加坡南洋理工大学访问学者,2013-2017年赴新加坡国立大学进行博士后研究,博士后合作导师为新加坡国立大学化工学院TongYenWah教授。在AppliedEnergy、Fuels、Energy、Energy&Fuels、SeparationPurificationTechnology、AIChEJournal、Ind.Eng.Chem.Res.等业内主流期刊上发表论文80余篇,申请发明专利20余项。
研究领域
主要研究领域为清洁能源过程工程,具体包括生物能源高效转化的工艺设计及开发、乳化油水高效分离技术、高效吸附分离等。
近期论文
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[1] Ying Wang, Yaopeng Zhang, Qian Li, Yanxiang Li, Lixia Cao, Wangliang Li, Amidoximated cellulose fiber membrane for uranium extraction from simulated seawater, Carbohydrate Polymers, 245 (2020) 116627.
[2] Ying Wang, Yanxiang Li, Lei Li, Fangong Kong, Song Lin, Zaiqian Wang, Wangliang Li, Preparation of three-dimensional fiber-network chitosan films for the efficient treatment of uranium-contaminated effluents, Water Science and Technology, 81 (2020) 52-61.
[3] Jing Wang, Lei Li, Hongbin Cao, Chuanfang Yang, Zhuang Guo, Yanchun Shi, Wangliang Li, He Zhao, Jiajun Sun, Yongbing Xie, Degradation of phenolic compounds by dielectric barrier plasma: Process optimization and influence of phenol substituents, Chemical Engineering Journal, 385 (2020) 123732.
[4] Yanxiang Li, Jinju Zhang, Chengbo Zhan, Fangong Kong, Wangliang Li, Chuanfang Yang, Benjamin S. Hsiao, Facile synthesis of TiO2/CNC nanocomposites for enhanced Cr(VI) photoreduction: Synergistic roles of cellulose nanocrystals, Carbohydrate Polymers, 233 (2020) 115838.
[5] Shengqiang Chang, Zhikai Zhang, Lixia Cao, Liqiang Ma, Siming You, Wangliang Li, Co-gasification of digestate and lignite in a downdraft fixed bed gasifier: Effect of temperature, Energy Conversion and Management, 213 (2020) 112798.
[6] Qian Zhang, Yanxiang Li, Lixia Cao, Lei Li, Kun Huang, Wangliang Li, Chuanfang Yang, Dilational Viscoelastic Properties of Water–Fuel Interfaces in Single and Binary Surfactant Systems, Energy & Fuels, 33 (2019) 9055-9066.
[7] Jinju Zhang, Yanxiang Li, Lei Li, Wangliang Li, Chuanfang Yang, Dual Functional N-Doped TiO2-Carbon Composite Fibers for Efficient Removal of Water Pollutants, ACS Sustainable Chemistry & Engineering, 6 (2018) 12893-12905.
[8] Wangliang Li, Kai-Chee Loh, Jingxin Zhang, Yen Wah Tong, Yanjun Dai, Two-stage anaerobic digestion of food waste and horticultural waste in high-solid system, Applied Energy, 209 (2018) 400-408.
[9] Yuming Zhang, Lei Huang, Xiaoying Xi, Wangliang Li, Guogang Sun, Shiqiu Gao, Shu Zhang, Deep Conversion of Venezuela Heavy Oil via Integrated Cracking and Coke Gasification–Combustion Process, Energy & Fuels, 31 (2017) 9915-9922.
[10] Jingxin Zhang, Kai-Chee Loh, Wangliang Li, Jun Wei Lim, Yanjun Dai, Yen Wah Tong, Three-stage anaerobic digester for food waste, Applied Energy, 194 (2017) 287-295.
[11] Wangliang Li, Changbo Lu, Gaojun An, Shengqiang Chang, Comparison of Alkali-Buffering Effects and Co-digestion on High-Solid Anaerobic Digestion of Horticultural Waste, Energy & Fuels, 31 (2017) 10990-10997.
[12] Zhikai Zhang, Guangyi Zhang, Wangliang Li, Chunxing Li, Guangwen Xu, Enhanced biogas production from sorghum stem by co-digestion with cow manure, International Journal of Hydrogen Energy, 41 (2016) 9153-9158.
[13] Qingfen Liu, Yingbo Li, Wangliang Li, Xiangfeng Liang, Chao Zhang, Huizhou Liu, Efficient Recovery of Penicillin G by a Hydrophobic Ionic Liquid, ACS Sustainable Chemistry & Engineering, 4 (2016) 609-615.
[14] Wangliang Li, High-Solid Anaerobic Codigestion of Horse Manure and Grass in Batch and Semi-continuous Systems, Energy & Fuels, 30 (2016) 6419-6424.
[15] Chang, Shengqiang; Zhang, Zhikai; Cao, Lixia; Ma, Liqiang; Wang, Fang; Li, Jihui; Li, Wangliang. 2020. "Interaction and Kinetics Study of the Co-Gasification of High-solid Anaerobic Digestate and Lignite." Molecules 25, no. 3: 459.