代表性论文: 1. Li, L., Pang, H., He, J*., & Zhang, J. (2019). Characterization of phosphorus species distribution in waste activated sludge after anaerobic digestion and chemical precipitation with Fe3+and Mg2+. Chemical Engineering Journal, 373, 1279-1285. 2. Li, L., He, J*., Wang, M., Xin, X., Xu, J., & Zhang, J*. (2018). Efficient volatile fatty acids production from waste activated sludge after ferrate pretreatment with alkaline environment and the responding microbial community shift. ACS Sustainable Chemistry & Engineering, 6(12), 16819-16827. 3. Li, L., He, J*., Xin, X., Wang, M., Xu, J., & Zhang, J. (2018). Enhanced bioproduction of short-chain fatty acids from waste activated sludge by potassium ferrate pretreatment. Chemical Engineering Journal, 332, 456-463. 4. He, J*.,Li, L*., Zhang, J., Wu, X., Li, B., & Tang, X. (2021). Medium chain fatty acids production from simple substrate and waste activated sludge with ethanol as the electron donor. Chemosphere, 131278. 5. Pang, H*.,Li, L., He, J., Yan, Z., Ma, Y., Nan, J., & Liu, Y*. (2020). New insight into enhanced production of short-chain fatty acids from waste activated sludge by cation exchange resin-induced hydrolysis. Chemical Engineering Journal, 388, 124235. 6. Mouhib, M., Reggente, M.,Li, L., Schuergers, N., & Boghossian, A. A. (2021). Tailored extracellular electron transfer pathways enhance the electroactivity of Escherichia coli. bioRxiv. 7. Pang, H*., Pan, X.,Li, L., He, J., Zheng, Y., Qu, F., ... & Liu, Y. (2020). An innovative alkaline protease-based pretreatment approach for enhanced short-chain fatty acids production via a short-term anaerobic fermentation of waste activated sludge. Bioresource Technology, 312, 123397. 8. Xin, X., He, J.,Li, L., & Qiu, W*. (2018). Enzymes catalyzing pre-hydrolysis facilitated the anaerobic fermentation of waste activated sludge with acidogenic and microbiological perspectives. Bioresource technology, 250, 69-78. 专利: 1. 一种深井曝气池和废水强化脱氮除磷装置及废水强化脱氮除磷的方法(ZL201510204745.4)。 2. 一种再絮凝低脉动的斜板沉淀装置(CN201721276557.3)。 |