Liang Li
Published: 2019-10-16  
Institute   Department of Environmental Science and Engineering
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Research Area     • Catalytic ozonation
     • Electrolytic oxidation/reduction
     • Biochar: preparation, characterization and adsorption capacity
Contact Info.liliang@usst.edu.cn


Education
2007-2010Doctor of Philosophy, Environmental Engineering,  University of Utah.
2004-2007Master of Science, Environmental Engineering, Fudan   University, Shanghai.
2000-2004Bachelor, Environmental Engineering,  Fudan University, Shanghai.


Honors and  Distinctions
2012CHENGUANG Scholar
2010Outstanding Ph.D Abroad
2009Water Environment Association of Utah Award


Journal   Publications
1. Huang, Y.Sun, Y.Xu, Z.Luo,   M.Zhu, C.Li, L. *Removal of aqueous oxalic acid by heterogeneous catalytic   ozonation with MnOx/sewage sludge-derived activated carbon as catalystsScience of the Total Environment201757550~57
2. Li, L., Yao, J.Fang, X.Huang, Y. Mu,   Y.Electrolytic ammonia   removal and current efficiency by a vermiculite-packed electrochemical   reactorScientific   Reports2017, 7, 41030
3. Li, L.Yao, J.Fang, X.Huang,   Y. Mu, Y.Electrolytic ammonia removal and   current efficiency by a vermiculite-packed electrochemical reactorScientific Reports2017, 7, 41030
4. Li, L.Zhou, Y.Zhang, Y.Huang,   Y.Goel, R.Enhanced electrolytic nitrate   reduction utilizing a three-dimensional electrolysis reactor packed with   activated carbon and foamed copperEnvironmental Engineering Science2016338):525~535
5. Huang, Y., Qin,   S., Zhang, D., Li, L.*, and Mu, Y. 2016. Evaluation of cell disruption of   Chlorella Vulgaris by pressure-assisted ozonation and ultrasonication,   Energies, 2016, 9, 173.
6. Li, L.Song, C.Huang, Y., Zhou, Y.Investigation of BTEX removal efficiency using the electrolytic   oxidation and Fenton's reactionJournal of Water Chemistry and Technology2016383):270~283
7. Huang, Y., Cui,   C., Zhang, D., Li, L.*, and Pan, D. 2015. Heterogeneous catalytic ozonation   of dibutyl phthalate in aqueous solution in the presence of iron-loaded   activated carbon. Chemosphere, 119, 295-301.
8. Li, L., Song,   C., Huang, Y., and Zhou, Y. 2015. Enhanced electrolytic removal of ammonia   from the aqueous phase with a zeolite-packed electrolysis reactor under a   continuous mode. Journal of Environmental Engineering, 141 (2), 04014056-1-8.
9. Li, L., Fang,   X., Zhang, D., Huang, Y. 2015. The adsorption and oxidation of ammonia in   granular activated carbon packed three-dimensional electrode reactor.   International Journal of Electrochemical Science, 10 (5): 4083-4089.
10. Huang, Y. and   Li, L.* 2014. Biodegradation characteristics of naphthalene and benzene,   toluene, ethyl benzene, and xylene (BTEX) by bacteria enriched from activated   sludge. Water Environment Research, 86, 277-284.
11. Huang, Y.,   Hong, A., Zhang, D., and Li, L.* 2014. Comparison of cell rupturing by   ozonation and ultrasonication for algal lipid extraction from Chlorella   vulgaris. Environmental Technology, 35, 931-937.
12. Huang, Y.,   Song, C., Li, L .*, and Zhou, Y. 2014. The mechanism and performance of   zeolites for ammonia removal in the zeolite packed electrolysis reactor.   Electrochemistry, 82, 557-560.
13. Huang, P., Li,   L., Kotay, S. M., and Goel, R. 2014. Carbon mass balance and microbial   ecology in a laboratory scale reactor achieving simultaneous sludge reduction   and nutrient removal. Water Research, 53, 153-167.
14. Li, L., Huang,   Y., and Liu, Y. 2013. Electrolytic removal of ammonia from aqueous phase by   Pt/Ti anode. Water Science & Technology, 67, 2451-2457
15. Huang, Y., Li,   L .*, and Song, C. 2013. Effect of phosphorus and nitrogen levels on the   lipid production of Chlorella vulgaris and evaluation of ultrasound assisted   lipid extraction. Fresenius Environmental Bulletin, 22, 2848-2854.
16. Li, L., and   Goel, R. 2012. Biodegradation of naphthalene, benzene, toluene, ethyl   benzene, and xylene in batch and membrane bioreactors. Environmental   Engineering Science, 29, 42-51.
17. Li, L.; Goel,   R. 2010. Role of hydroxyl radical during electrolytic degradation of   contaminants, Journal of Hazardous Materials, 181, 521-525.
18. Li, L., and   Liu, Y. 2009. Ammonia removal in electrochemical oxidation: Mechanism and   pseudo-kinetics. Journal of Hazardous Materials, 161, 1010-1016.
19. Liu, Y., Li,   L., and Goel, R. 2009. Kinetic study of electrolytic ammonia removal using   Ti/IrO2 as anode under different experimental conditions. Journal of   Hazardous Materials, 167, 959-965.
20. Huang, L., Li,   L., Dong, W., Liu, Y. and Hou, H. 2008. Removal of Ammonia by OH Radical in   Aqueous Phase. Environmental Science & Technology, 42, 8070-8075


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TEL:021-55275979 E-mail:sea@usst.edu.cn