1. Jing Wu, Yu-ying HU, Shi-feng WANG, Zhi-ping CAO, Huai-zhi Li, Xin-Mei Fu, Kai-jun WANG, Jian-e ZUO. Effects of thermal treatment on high solid anaerobic digestion of swine manure: Enhancement assessment and kinetic analysis. Waste Management. http://dx.doi.org/10.1016/j.wasman. 2017 .02.022
2. Zohaib Ur Rehman Afridi, Jing Wu, Zhi Ping Cao, Zhong Liang Zhang, Zhong Hua Li, Souhila Poncin, Huai Zhi Li. Insight into mass transfer by convective diffusion in anaerobic granules to enhance biogas production. Biochemical Engineering Journal. 2017,127:154-160.
3. Jiankai Jiang, Jing Wu, Souhila Poncin, Huai Z. Li.Rheological characterization of digested sludge by solid sphere impact. Bioresource Technology, 218 (2016) 301–306.
4. Jiankai Jiang, Jing Wu, Zhongliang Zhang, Souhila Poncin, Véronique Falk, Huai Z. Li. Crater formation on anaerobic granular sludge. Chemical Engineering Journal, 300(2016)423-428.
5. Jiankai Jiang, Jing Wu, Souhila Poncin, Huai Z. Li*. Effect of hydrodynamic shear on biogas production and granule characteristics in a continuous stirred tank reactor. Process Biochemistry. 2016, 51(3): 345-351.
6. Jing Wu, Zohaib Ur Rehman Afridi, Zhi Ping Cao, et al. Size effect of anaerobic granular sludge on biogas production: A micro scale study. Bioresource Technology. 2016. 202: 165-171.
8. J. Wu, Y. Jiang, Z. P. Cao, Z. H. L, Y. Y. Hu, H. Z. Li, J. E. Zuo, K. J. Wang. Enhanced anaerobic digestion of waste activated sludge of low organic content in a novel digester. Water Science and Technology. 2015,72: 966-973
9. Jing WU; Jinbai Zhang; Souhila Poncin; Huai Z. Li; Jiankai Jiang; Zohaib Ur Rehman. Effects of rising biogas bubbles on the hydrodynamic shear conditions around anaerobic granule. Chemical Engineering Journal. 2015, 273:111–119.
11. Jiang JK, Wu J, et al. Multiscale hydrodynamic investigation to intensify the biogas production in upflow anaerobic reactors. Bioresource Technology, 2014,155, 1-7.
14. Zhang, J. B., Wu, J., Poncin, S., Hamelin, M., & Li, H. Z., Microscale investigation of anaerobic biogas production under various hydrodynamic conditions. Environmental science & technology, 2012, 46(16), 8698-8704.
15. Wu J., Bi L., Zhang JB, et al. Effects of increase modes of shear force on granule disruption in upflow anaerobic reactors. Water Research. 46 (2012) 3189 -3196
16. Wu J., J.B. Zhang, Y. Jiang, Z.P. Cao, S. Poncin, H.Z. Li. Impacts of hydrodynamic conditions on sludge digestion in internal circulation anaerobic digester. Process Biochemistry. 2012.47,1627-1632.
17. Zhang J B, Poncin S., Wu J. et al. A multiscale approach for studying an anaerobic multiphase bioreactor. Chemical Engineering Science (2011), 66(14), 3423 - 3431
18. Wu J, Zhou HM, Li HZ, et al. Impacts of hydrodynamic shear force on nucleation of flocculent sludge in anaerobic reactor, Water Research,2009, 43, 12 , 3029-3036
19. J. Wu, H.M. Zhou, J. Jiang, Y.M. Xie. Quantitative investigation on nucleation of flocculent sludge under different hydraulic conditions in anaerobic reactors.Journal of Biotechnology, 136(Supplement 1), 2008, S466
20. Wu J, Lu Z Y, J C Hu, Feng L, Huang J D, Gu X S. Disruption of Granules by Hydrodynamic Force in Internal Circulation Anaerobic Reactor. Water Science & Technology. 2006, 54 (9): 9-16
21. Wu J., Pons M.N. and Potier O. Wastewater fingerprinting by UV-visible and synchronous fluorescence spectroscopy. Water Science & Technology. 2006, 53(4/5),449-456