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Institute | Department of Environmental Science and Engineering | | Research Area | • Catalytic ozonation • Electrolytic oxidation/reduction • Biochar: preparation, characterization and adsorption capacity | Contact Info. | liliang@usst.edu.cn |
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| Education | 2007-2010 | Doctor of Philosophy, Environmental Engineering, University of Utah. | 2004-2007 | Master of Science, Environmental Engineering, Fudan University, Shanghai. | 2000-2004 | Bachelor, Environmental Engineering, Fudan University, Shanghai. |
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| Honors and Distinctions | 2012 | CHENGUANG Scholar | 2010 | Outstanding Ph.D Abroad | 2009 | Water Environment Association of Utah Award |
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| 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 catalysts,Science of the Total Environment,2017,575:50~57 | 2. Li, L., Yao, J.,Fang, X.,Huang, Y. ,Mu, Y.,Electrolytic ammonia removal and current efficiency by a vermiculite-packed electrochemical reactor,Scientific Reports,2017, 7, 41030 | 3. Li, L.,Yao, J.,Fang, X.,Huang, Y. ,Mu, Y.,Electrolytic ammonia removal and current efficiency by a vermiculite-packed electrochemical reactor,Scientific Reports,2017, 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 copper,Environmental Engineering Science,2016,33(8):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 reaction,Journal of Water Chemistry and Technology,2016,38(3):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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